List of Publications Koichi Yamada - Staff · “The monocyclic water hexamer detected in neon...

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List of PublicationsKoichi YamadaNational Institute of Advanced Industrial Science and Technology AIST Tsukuba-West, Onogawa 16-1, Tsukuba 305-8569 Japan Jan. 10, 2018 The number following the serial number indicates the citation index (“times cited” from the list of ISI latest version) for each paper. From Ref. 43, “Koichi M.T. Yamada” or “K. M.T. Yamada” is used to avoid the confusion arising from a common Japanese name “Koichi Yamada”. 1

Transcript of List of Publications Koichi Yamada - Staff · “The monocyclic water hexamer detected in neon...

Page 1: List of Publications Koichi Yamada - Staff · “The monocyclic water hexamer detected in neon matrices by infrared spectroscopy ... “Terahertz Measurements of Rotational Transitions

List of Publications†

Koichi Yamada‡

National Institute of Advanced Industrial Science and Technology

AIST Tsukuba-West, Onogawa 16-1, Tsukuba 305-8569

Japan

Jan. 10, 2018

† The number following the serial number indicates the citation index (“times cited” from the list

of ISI latest version) for each paper.

‡From Ref. 43, “Koichi M.T. Yamada” or “K. M.T. Yamada” is used to avoid the confusion arising

from a common Japanese name “Koichi Yamada”.

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Part 1: Original Papers

(190:0)Sho Okubo, Kana Iwakuni, Koichi M. T. Yamada, Hajime Inaba, Atsushi

Onae, Feng-Lei Hong, and Hiroyuki Sasada,

J. Mol. Spectrosc., 341, 10–16 (2017).

“Transition dipole-moment of ν1 + ν3 band of acetylene measured with dual-comb

Fourier-transform spectroscopy”

(189:0)Kana Iwakuni, Sho Okubo, Koichi M. T. Yamada, Hajime Inaba, Atsushi

Onae, Feng-Lei Hong, and Hiroyuki Sasada,

Phys. Rev. Letters, 119, 069402:1–23 (2017).

Reply to the comment on “Ortho-Para-Dependent Pressure Effects Observed in the

Near Infrared Band of Acetylene by Dual-Comb Spectroscopy”

(188:0) P. Kutzer, S. Hartung, O. Pirali, R. Pietschnig, C. Medcraft, K. M. T.

Yamada, and T. F. Giesen,

Heteroatom Chem. 28, 21361 (2017).

“Tert-butyl-dibromophosphane tBuPBr2 - A new Chemical Synthesis and First Spec-

troscopic Characterization”

(187:0) Koichi M. T. Yamada, Stephen C. Ross, and Fumiyuki Ito,

Mol. Astrophys. 6, 9–15 (2017).

“13C-substituted C+60: predictions of the rotational spectra”

(186:0) Alexander A. Breier, Thomas Buchling, Rico Schnierer, Volker Lutter, Guido

W. Fuchs, Koichi M. T. Yamada, Bhaswati Mookerjea, Jurgen Stutzki, and Thomas

F. Giesen

J. Chem. Phys. 145, 234302:1–10 (2016).

“Lowest bending mode of 13C-substituted C3 and an experimentally derived struc-

ture”

(185:0) P. Kutzer, D. Weismann, B. Wassmuth, O. Pirali, P. Roy, K. M. T. Yamada,

T. F. Giesen,

J. Mol. Spectrosc., 329, 28–34 (2016).

“Far-infrared spectra of dimethyl-ether and its 13C enriched isotopologues: The

fundamental band of the C–O–C in plane bending mode, ν7”

(184:8) Kana Iwakuni, Sho Okubo, Koichi M. T. Yamada, Hajime Inaba, Atsushi

Onae, Feng-Lei Hong, and Hiroyuki Sasada,

Phys. Rev. Letters, 117, 143902:1–5 (2016).

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“Ortho-Para-Dependent Pressure Effects Observed in the Near Infrared Band of

Acetylene by Dual-Comb Spectroscopy”

(183:34) Oskar Asvany, Koichi M. T. Yamada, Sandra Brunken, Alexey Potapov

and Stephan Schlemmer,

Science, 347, 1346–1349 (2015).

“Experimental ground-state combination differences of CH+5 ”

(182:6) Doris Herberth, Oliver Baum, Oliver Pirali, Pascale Roy, Sven Thorwirth,

Koichi M. T. Yamada, Stephan Schlemmer and Thomas F. Giesen,

J. Quant. Spectrosc. Radiat. Transfer, 113, 1117–1133 (2012).

“Far infrared Fourier-transform spectroscopy of mono-deuterated hydrogen peroxide

HOOD”

(181:1) Koichi M. T. Yamada and Stephen C. Ross,

J. Mol. Spectrosc. 267, 58–66 (2011).

“Ro-torsional energy correlation between the high barrier and free-internal-rotor

limits: The case of the skew chain molecule HSOH”

(180:16) Hisashi Abe and Koichi M. T. Yamada,

Sens. Actuat. A, 165, 230–238 (2011).

“Performance evaluation of a trace-moisture analyzer based on cavity ring-down

spectroscopy: Direct comparison with the NMIJ trace-moisture standard”

(179:1) Koichi M. T. Yamada,

J. Mol. Spectrosc. 259, 62–63 (2010).

Reply to the comment on “The molecular symmetry group of the CO dimer and the

assignments of the intermolecular vibrations”

(178:2) Stephen C. Ross, Koichi M. T. Yamada, and Fumiyuki Ito,

Phys. Chem. Chem. Phys. 12, 11133–11150 (2010).

“Torsion-rotation coupling and the determination of the torsional potential energy

function of HSOH ”

(177:28) Koichi M. T. Yamada, Atsushi Onae, Feng-Lei Hong, Hajime Inaba, and

Tadao Shimizu,

C. R. Phys. 10, 907–915 (2009).

“Precise determination of the Doppler width of a rovibrational absorption line using

comb-locked diode laser”

(176:5) Koichi M. T. Yamada, Per Jensen, Stephen C. Ross, Oliver Baum, Thomas

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F. Giesen, and Stephan Schlemmer,

J. Mol. Struct. 927, 96–100 (2009).

“The torsional and asymmetric splittings in HSOH”

(175:4) Koichi M. T. Yamada,

J. Mol. Spectrosc. 254, 87–93 (2009).

“The molecular symmetry group of the CO dimer and the assignments of the inter-

molecular vibrations”

(174:10) M. Caris, T.F. Giesen, C. Duan, H.S.P. Muller, S. Schlemmer, and K. M.

T. Yamada,

J. Mol. Spectrosc. 253, 99–105 (2009).

“Sub-millimeter wave spectroscopy of the C3H radical: ro-vibrational tansitions from

ground to the lowest bending state”

(173:6) Oliver Baum, Monika Koerber, Oliver Ricken, Gisbert Winnewisser, Sergei

N. Yurchenko, Stephan Schlemmer, Koichi M. T. Yamada, and Thomas F. Giesen,

J. Chem. Phys. 129, 224312:1–6 (2008).

“The Rotational Spectrum of H32SOH and H34SOH above 1 THz”

(172:26) K. M. T. Yamada, A. Onae, F.-L. Hong, H. Inaba, H. Matsumoto, Y.

Nakajima, F. Ito, and T. Shimizu,

J. Mol. Spectrosc. 249 95–99 (2008).

“High precision line profile measurements on 13C acetylene using a near infrared

frequency comb spectrometer”

(171:12) P. Neubauer-Gunther, T.F. Giesen, S. Schlemmer, and Koichi M. T. Ya-

mada,

J. Chem. Phys. 127, 014313:1–8 (2007).

“High resolution infrared spectra of the linear carbon cluster C7: The ν4 stretching

fundamental band and associated hot bands”

(170:13) Shinichi Hirabayashi and Koichi M. T. Yamada,

Chem. Phys. lett. 435, 74–78 (2007).

“The monocyclic water hexamer detected in neon matrices by infrared spectroscopy”

(169:7) Stephen C. Ross and Koichi M. T. Yamada,

Phys. Chem. Chem. Phys. 9 5809–5813 (2007).

“Energy Level Promotion in the Correlation from the Tunnelling-doubled Harmonic

Oscillator to the Bi-Rotor: Application to Internal Rotation in Molecules”

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(168:20) Toshihide Hikida and Koichi M. T. Yamada,

J. Mol. Spectrosc. 239, 154–159 (2006).

“N2 and O2-broadening of CO2 for the (3001)III ← (0000) band at 6231 cm−1”

(167:24) Shinichi Hirabayashi and Koichi M. T. Yamada,

J. Mol. Struct. 795, 78–83 (2006).

“Infrared spectra and structure of water clusters trapped in argon and krypton

matrices ”

(166:4) Koichi M. T. Yamada and Stephen C. Ross,

J. Mol. Structure. 795, 84–92 (2006).

“Isomerization: Don’t forget the possibility of enhanced tunnelling! A simple two-

state model for the on-resonance and near resonance behaviour of enhanced tun-

nelling”

(165:15) Shinichi Hirabayashi, Fumiyuki Ito, and Koichi M. T. Yamada,

J. Chem. Phys. 125, 034508:1–6 (2006).

“Infrared spectra of the (H2O)n-SO2 complexes in argon matrices”

(164:10) Shinichi Hirabayashi and Koichi M. T. Yamada,

Chem. Phys. Lett. 418 323–327 (2006).

“Infrared Spectra of the H2O-Kr and H2O-Xe complexes in argon matrices ”

(163:10) Isamu Morino and Koichi M. T. Yamada,

J. Mol. Spectrosc. 233 77–85 (2005).

“Absorption Profiles of HCl for the J=1–0 Rotational Transition: Foreign Gas Ef-

fects Measured for N2, O2, and Ar ”

(162:22) Toshihide Hikida, Koichi M. T. Yamada, Masashi Fukabori, Tadao Aoki,

and Takeshi Watanabe,

J. Mol. Spectrosc. 232, 202–212 (2005).

“Intensities and self-broadening coefficients of CO2 ro-vibrational transitions mea-

sured by a near-IR diode laser Spectrometer”

(161:45) Shinichi Hirabayashi and Koichi M. T. Yamada,

J. Chem. Phys. 122, 244501:1–5 (2005).

“Infrared Spectra of water clusters in krypton and xenon matrices”

(160:10) S. Brunken, M. Behnke, S. Thorwirth, K. M. T. Yamada, T. Giessen, F.

Lewen, J. Hahn, and G. Winnewisser,

J. Mol. Struct. 742 237–242 (2005).

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“Asymmetric rotor analysis of DSOD spectra up to the rQ3 branch near 653 GHz ”

(159:2) S. Urban, P. Kania, M. Simeckova, G. Winnewisser and K. M. T. Yamada,

J. Mol. Struct. 742, 243–247 (2005).

“Apparent pressure shift of the rotational transitions as a consequence of the unre-

solved hyperfine structure ”

(158:11) Shinichi Hirabayashi, Kayo Ohno, Hisashi Abe, and Koichi M. T. Yamada,

J. Chem. Phys. 122, 194506:1–6 (2005).

“Infrared Spectra of the water-nitrogen complexes (H2O)2–(N2)n (n = 1 − 4) in

argon matrices”

(157:14) C. Degli Esposti, L. Bizzocchi, P. Botschwina, Koichi M. T. Yamada, G.

Winnewisser, S. Thorwirth, and P. Forster,

J. Mol. Spectrosc. 230, 185–195 (2005).

“Vibrationally excited states of HC5N: millimeter-wave spectroscopy and coupled

cluster calculations”

(156:11) Hisashi Abe and Koichi M. T. Yamada,

J. Chem. Phys. 121, 7803–7812 (2004).

“Spectroscopic identification of the CO-H2O 2-1 cluster trapped in an argon matrix”

(155:14) K. M. T. Yamada, C. Degli Esposti, P. Botschwina, P. Forster, L. Bizzocchi,

S. Thorwirth, and G. Winnewisser,

Astron. Astrophys. 425, 767–772 (2004).

“Millimeter-wave spectroscopy of HC5N in vibrationally excited states below 500

cm−1”

(154:19) Marie Simeckova, Stepan Urban, Urlike Fuchs, Frank Lewen, Gisbert Win-

newisser, Isamu Morino, and Koichi M. T. Yamada,

J. Mol. Spectrosc. 226, 123–136 (2004).

“Ground State Spectrum of Methylcyanide”

(153:3) Stephen C. Ross and Koichi M. T. Yamada,

Mol. Phys. 102, 1803–1825 (2004).

“Correlation diagrams between the free-rotor and the hindered rotor states of a

diatomic molecule: energy levels and transition moments obtained by numerical

integration of the Schrodinger equation”

(152:18) Koichi M. T. Yamada, Gisbert Winnewisser, and Per Jensen,

J. Mol. Struct. 695-696, 323–337 (2004).

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“Internal rotation tunnelling in HOSH”

(151:18) Markus Behnke, Jan Suhr, Sven Thorwirth, Frank Lewen, Holger Lichau,

Josef Hahn, Jurgen Gauss, Koichi M. T. Yamada, and Gisbert Winnewisser,

J. Mol. Spectrosc. 221, 121–126 (2003).

“Gas-phase detection of discharge-generated DSOD”

(150:13) Isamu Morino and Koichi M. T. Yamada,

J. Mol. Spectrosc. 219, 282–289 (2003).

“Absorption Line Profiles of N2OMeasured for the J = 25−24 and 26−25 Rotational

Transitions”

(149:2) M. Sato, O. Setokuchi, K. M. T. Yamada, and T. Ibusuki,

Vib. Spectrosc. 31,167–172 (2003).

“Experimental Simulation of Infrared Spectra of PSCs: Films of Nitric Acid/Ice

Micture at Low Temperature Observed by Grazing-angle Reflection Spectroscopy”

(148:16) H. Abe and K. M. T. Yamada,

Structural Chemistry, 14, 211–215 (2003).

“Infrared Spectra of Carbon Monoxide in Kr and Xe Matrices”

(147:11) Koichi M. T. Yamada and Hisashi Abe,

J. Mol. Spectrosc. 217, 87–92 (2003).

“The Line Broadening and Shift Coefficient of the CO J=5–4 Transition at 576 GHz

induced by Collisions of Itself and of Rare Gases”

(146:32) Manfred Winnewisser, Brenda P. Winnewisser, Monika Stein, Mafred Birk,

Georg Wagner, Gisbert Winnewisser, Koichi M. T. Yamada, Sergey Belov, and Oleg

I. Baskakov,

J. Mol. Spectrosc. 216, 259–265 (2002).

“Rotational Spectra of cis-HCOOH, trans-HCOOH, and trans-H13COOH ”

(145:11) Koichi M. T. Yamada, Takeshi Watanabe, and Masashi Fukabori,

J. Mol. Spectrosc. 216, 170–171 (2002).

“J-Dependence of the N2 and O2-Pressure Broadening Coefficients Observed for

NNO ν1 + ν3 Band as Expressed by Rational Functions”

(144:7) Isamu Morino and Koichi M. T. Yamada,

J. Mol. Spectrosc 207, 10–15 (2001).

“Submillimeter-wave Spectra of the SF Radical”

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(143:14) T. F. Giesen, U. Berndt, K. M. T. Yamada, G. Fuchs, R. Schieder, G.

Winnewisser, R.A. Provencal, F.N. Keutsch, A. Van Orden, and R.J. Saykally,

ChemPhysChem 2, 242–247 (2001).

“Detection of the Linear Carbon Cluster C10: Rotationally Resolved Diode Laser

Spectroscopy”

(142:19) Hisashi Abe and Koichi M. T. Yamada,

J. Chem. Phys. 114, 6134–6141 (2001).

“Infrared Spectra of the CO-H2O 1-1 Cluster in an Argon Matrix”

(141:8) Isamu Morino, Koichi M. T. Yamada, Sergei P. Belov, Gisbert Winnewisser,

and Eric Herbst,

Astrophys. J. 532, 377–383 (2000).

“The CF Radical: Its Terahertz Spectrum and Detectability in Space”

(140:4+2) I. Morino, K. M. T. Yamada, and A. G. Maki,

J. Mol. Spectrosc. 200, 145–146 (2000).

“Terahertz Measurements of Rotational Transitions in Vibrationally Excited State

of OCS”

[ERRATUM] 200, 290 (2000).

(139:6) I. Morino, K. M. T. Yamada, H. Klein, S. P. Belov, G. Winnewisser, R.

Bocquet, G. Wlodarczak, W. Lodyga, and M. Kreglewski,

J. Mol. Struct. 517, 367–373 (2000).

“Terahertz Rotational Spectra of NH2OH in the Ground and Some Excited Vibra-

tional States”

(138:17) Mike Fabian and Koichi M. T. Yamada,

J. Mol. Spectrosc. 198, 102–109 (1999).

“Absolute Intensity of the NH3 ν2 Band”

(137:38) Hisashi Abe, Harutoshi Takeo, and Koichi M. T. Yamada,

Chem. Phys. Lett. 311, 153–158 (1999).

“Infrared Spectra of CO trapped in Ar Matrix Revisited”

(136:11) I. Morino, K. M. T. Yamada, and A. G. Maki,

J. Mol. Spectrosc. 196, 131–138 (1999).

“Terahertz Measurements of Rotational Transitions in Vibrationally Excited States

of N2O”

(135:2) K. M. T. Yamada,

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J. Mol. Struct. 480-481, 45–59 (1999).

“Spectroscopy of Clusters at NAIR”

(134:23) Holger S.P. Muller, Henrik Klein, Sergei P. Belov, Gisbert Winnewisser,

Isamu Morino, Koichi M. T. Yamada, and Shuji Saito,

J. Mol. Spectrosc., 195 177–184 (1999).

“Terahertz Spectroscopy of the Amidogen Radical, NH2”

(133:85) Takeshi Baba, Takehiko Tanaka, Isamu Morino, Koichi M. T. Yamada, and

Keiichi Tanaka,

J. Chem. Phys. 110, 4131–4133 (1999).

“Detection of the Tunneling-rotation Transitions of Malonaldehyde in Submillimeter-

wave Region”

(132:16) Mike Fabian, Isamu Morino, and Koichi M. T. Yamada,

J. Mol. Spectrosc. 190, 232–239 (1998).

“Analysis of the Line Profiles of CH3CN for the J = 5 ← 4 and 6 ← 5 Rotational

Transitions”

(131:19) I. Pak, D. A. Roth, M. Hepp, G. Winnewisser, D. Scouteris, B.J. Howard,

and K. M. T. Yamada,

Z. Naturforsh. 53a, 725–732 (1998).

“High Resolution Spectroscopy of Ar–CH4 and Kr–CH4 in the 7 µ Region (j = 1← 0

transition)”

(130:8) Mike Fabian, Isamu Morino, and Koichi M. T. Yamada,

J. Mol. Spectrosc. 185, 422–424 (1997).

“Absolute Intensity Measurement of the CO J = 1← 0 Transition at 115 GHz”

(129:14) M. Liedtke, K. M. T. Yamada, G. Winnewisser, and J. Hahn

J. Mol. Struct. 413-414, 265–270 (1997).

“Molecular Structure of cis- and trans-H2S3”

(128:32) Isamu Morino, Mike Fabian, Harutoshi Takeo, and Koichi M. T. Yamada,

J. Mol. Spectrosc. 185, 142–146 (1997).

“High-J Rotational Transitions of NNO Measured by the NAIR Terahertz Spec-

trometer”

(127:11) N. Schmucker, Ch. Trojan, T. Giesen, R. Schieder, K. M. T. Yamada, and

G. Winnewisser,

J. Mol. Spectrosc. 184, 250–256 (1997).

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“Pressure Broadening and Shift of Some H2O Lines in the ν2 Band: Revisited”

(126:12) M. Niedenhoff, K. M. T. Yamada, and G. Winnewisser,

J. Mol. Spectrosc. 183, 176–199 (1997).

“Pure Rotational Spectra of HNCS in the Far Infrared Region: Three Bending

Excited States”

(125:10) I. Pak, M. Hepp, D.A. Roth, G. Winnewisser, and K. M. T. Yamada,

Z. Naturforsch. 51a, 997–1001 (1996).

“Detection of Ar–CH4 Complexes in the 7 µm Region by Diode Laser Spectroscopy”

(124:2) K. Yokoyama, W. C. Lineberger, and K. M. T. Yamada,

J. Mol. Spectrosc. 178, 93–98 (1996).

“A Breakdown of the Watson-Type Hamiltonian for Some Asymmetric Top Mole-

cules: The Case of Spin Multiplet State”

(123:1) S. Urban, J. Behrend, K. M. T. Yamada, and G. Winnewisser,

J. Mol. Spectrosc. 177, 280–284 (1996).

“Torsional and Stretching Fundamental Vibrational States of HS34SH”

(122:11) M. Fabian, R. Schieder, K. M. T. Yamada, and G. Winnewisser,

J. Mol. Spectrosc. 177, 294–301 (1996).

“Pressure Broadening and Shift of some NH3 Lines in the ν2 Band”

(121:36) R. Bocquet, J. Demaison, L. Poteau, M. Liedtke, S. P. Belov, K. M. T.

Yamada, G. Winnewisser, C. Gerke, J. Gripp, and Th. Kohler,

J. Mol. Spectrosc. 177, 154–159 (1996).

“The Ground State Rotational Spectrum of Formaldehyde”

(120:6) M. Niedenhoff, K. M. T. Yamada, and G. Winnewisser,

J. Mol. Spectrosc. 176, 342–363 (1996).

“Pure Rotational Spectra of HNCO in the Far Infrared Region: Three Bending

Excited States”

(119:9) K. M. T. Yamada, J. Behrend, S. P. Belov, and G. Winnewisser,

J. Mol. Spectrosc. 176, 397–402 (1996).

“Anomalous K-type Doubling of HSSH”

(118:4) K. M. T. Yamada, A. Moravec, M. Niedenhoff, H. Burger, and G. Win-

newisser,

Z. Naturforsch. 51a, 27–35 (1996).

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“The 2ν5 Overtone Band of Cyanoacetylene by High Resolution FTIR Spectroscopy”

(117:0) K. M. T. Yamada, A. Moravec, M. Niedenhoff, and G. Winnewisser,

Z. Naturforsch. 51a, 36–40 (1996).

“Intensities and Widths of the Rovibrational Lines Observed in the 2ν5 Overtone

Band of Cyanoacetylene”

(116:9) K. M. T. Yamada, A. Moravec, and G. Winnewisser,

Z. Naturforsch. 50a 1179–1181 (1995).

“Sub-millimeter Wave Spectra of Cyanoacetylene and Revised Ground State Con-

stants”

(115:12) M. Niedenhoff, K. M. T. Yamada, S. P. Belov, and G. Winnewisser,

J. Mol. Spectrosc. 174, 151–171 (1995).

“Pure Rotational Spectra of HNCO in Far Infrared: Ground State Analysis”

(114:27) S.P. Belov, K. M. T. Yamada, G. Winnewisser, L. Poteau, R. Bocquet, J.

Demaison, O. Polyansky, and M. Yu. Tretyakov,

J. Mol. Spectrosc. 173, 380–390 (1995).

“Terahertz Rotational Spectrum of H2S”

(113:20+1) Mike Fabian, Fumiyuki Ito, and K. M. T. Yamada,

J. Mol. Spectrosc. 173, 591–602 (1995).

“N2, O2, and Air Broadening of NH3 in ν2 Band Measured by FTIR Spectroscopy”

[CORRIGENDUM] 236, 150 (2006).

(112:11) Marion Niedenhoff, Koichi M. T. Yamada, G. Winnewisser, and Stephen

C. Ross,

J. Mol. Structure, 352/353 423–433 (1995).

“The ν4 Large Amplitude Bending potential of HNCO as Determined by the Semi-

rigid Bender Analysis of the Ground State Rotational Spectra”

(111:13) M. Niedenhoff, G. Winnewisser, K. M. T. Yamada, and S. P. Belov,

J. Mol. Spectrosc. 169, 224–242 (1995).

“Pure Rotational Spectra of HNCS in the Far Infrared Region: Ground State Anal-

ysis”

(110:11) Stepan Urban, Stefan Klee, and Koichi M. T. Yamada

J. Mol. Spectrosc. 168, 384–389 (1994).

“Ground State Ro-inversional Transitions of 15NH3 in the Far Infrared Region”

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(101:12) S. Haas, K. M. T. Yamada, and G. Winnewisser,

J. Mol. Spectrosc. 164, 445–455 (1994).

“High Resolution Fourier Transform Spectrum of ν13 Fundamental of Triacetylene

in the Far Infrared Region”

(100:26) M. Hepp, G. Winnewisser, and K. M. T. Yamada,

J. Mol. Spectrosc. 164, 311–314 (1994).

“Conservation of the Nuclear Spin Modification of CH4 in the Cooling Process by

Supersonic Jet Expansion”

(99:10) B. Pankoke, K. M. T. Yamada, and G. Winnewisser,

Z. Naturforsch. 48a, 1193–1202 (1993).

“High Resolution IR-Spectra of Furane and Thiophene”

(98:24) M. Liedtke, A. H. Saleck, K. M. T. Yamada, G. Winnewisser, S. Dobos, D.

Cremer, E. Kraka, A. Dolgner, and J. Hahn,

J. Phys. Chem., 97, 11204-11210 (1993).

“Discovery of trans-HSSSH”

(97:5) S. Urban, J. Behrend, K. M. T. Yamada, and G. Winnewisser,

J. Mol. Spectrosc., 161, 511–541 (1993).

“Coriolis Interactions between the Fundamental Stretching and Torsional Vibra-

tional States of Disulfane (H2S2)”

(96:30) N. Anselm, K. M. T. Yamada, R. Schieder, and G. Winnewisser,

J. Mol. Spectrosc. 161, 284–296 (1993).

“Measurements of Foreign Pressure Shift and Broadening in the (1-0)-band of CO

with N2 and Ar”

(95:11) M. Liedtke, R. Schieder, K. M. T. Yamada, G. Winnewisser, S.P. Belov, and

A. F. Krupnov,

J. Mol. Spectrosc. 161, 317–321 (1993).

“The rQ3 Branch of HSSH at 980 GHz: Anomalous K-Doubling of the Ka = 3

Levels”

(94:15) S. Urban and K. M. T. Yamada,

J. Mol. Spectrosc. 160, 270–288 (1993).

“A Breakdown of the Watson-Type Hamiltonian for Some Asymmetric Top Mole-

cules”

(93:56) G. Pelz, K. M. T. Yamada, and G. Winnewisser,

13

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J. Mol. Spectrosc. 159, 507–520 (1993).

“Torsional Dependence of the Effective Rotational Constants of H2O2 and H2S2”

(92:19) M. Niedenhoff and K. M. T. Yamada,

J. Mol. Spectrosc. 157, 84–94 (1993).

“Systematic Calculation of Vibration-Rotation Energy Levels of a Linear Molecule

with Two Bending Modes”

(91:28) K. M. T. Yamada, M. Harter, and T. Giesen,

J. Mol. Spectrosc. 157, 182–197 (1993).

“Survey Study of Air Broadened Water Vapor Lines in the ν2 Band by High Reso-

lution FTIR Spectroscopy”

(90:7) Flemming Winther, Maren Ketelsen, Marion Niedenhoff, and Koichi M. T.

Yamada,

Z. Naturforsch. 47a 1253–1254 (1992).

“The ν4 Rotation Vibration Band of Dicyanoacetylene”

(89:11) G. Pelz, P. Mittler, G. Winnewisser, and K. M. T. Yamada,

J. Mol. Spectorosc. 156, 390–402 (1992).

“Millimeter Wave Spectra and Revised Spectroscopic Parameters of Methylsilane”

(88:30) J.W.C. Johns, L. Nemes, K. M. T. Yamada, T.Y. Wang, J.L. Domenech, J.

Santos, P. Cancio, D. Bermejo, J. Ortigoso, and R. Escribano,

J. Mol. Spectrosc. 156, 501–503 (1992).

“The Ground State Constants of Ketene”

(87:15) Koichi M. T. Yamada,

J. Mol. Spectrosc. 156, 512–516 (1992).

“Standard Deviations in Weighted Least-Squares Analyses”

(86:14) A.H. Saleck, K. M. T. Yamada, and G. Winnewisser,

Mol. Phys. 76, 1443–1455 (1992).

“High Resolution Spectrum of 14N16O in the Far Infrared Region: 2Π 3

2

−2 Π 1

2

Tran-

sitions”

(85:10) M. Hepp, G. Winnewisser, and K. M. T. Yamada,

J. Mol. Spectrosc. 153, 376–384 (1992).

“Collisional Nuclear Spin Intercombination in NH3 Observed in Supersonic Jet Ex-

pansion by Diode Laser Spectroscopy”

14

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“The Diode Laser Spectra of Fluorocyanoacetylene”

(75:13) A. Moravec, G. Winnewisser, K. M. T. Yamada, and C.E. Blom,

Z. Naturforsch. 45a, 946–952 (1990).

“Improved Molecular Constants of Acetylene Obtained from the ν5 Band System”

(74:9) P. Mittler, K. M. T. Yamada, and G. Winnewisser,

Chem. Phys. Lett. 170, 125–127 (1990).

“Saturation Spectroscopy on the Ground State of H2S2”

(73:5) Koichi M. T. Yamada,

Z. Naturforsch. 45a, 837–838 (1990).

“Pure Rotation Spectrum of NNO in the Far Infrared Region”

(72:17) J. Behrend, P. Mittler, G. Winnewisser, K. M. T. Yamada, and M. Win-

newisser,

J. Mol. Spectrosc. 141, 265–280 (1990).

“Complete Rotational Analysis of the Ground State of HSSH”

(71:5) Petra Mittler, Gisbert Winnewisser, Koichi M. T. Yamada, and Eric Herbst,

J. Mol. Spectrosc. 140, 259–268 (1990).

“New Measurements on the Frequency doubling in the First Excited S–S Stretching

State of HSSH”

(70:20) Koichi M. T. Yamada, Manfred Winnewisser, and J. W. C. Johns,

J. Mol. Spectrosc. 140, 353–372 (1990).

“High-Resolution Spectrum of the ν1 Fundamental Band of Isocyanic acid, HNCO”

(69:24) Eric Herbst, G. Winnewisser, K. M. T. Yamada, D. J. DeFrees, and A.D.

McLean,

J. Chem. Phys. 91, 5905–5909 (1989).

“Ab Initio Determination of Mode Coupling in HSSH: The Torsional Splitting in

the First Excited S–S Stretching State”

(68:36) Stepan Urban, Eric Herbst, Petra Mittler, Gisbert Winnewisser, Koichi M.

T. Yamada, and Manfred Winnewisser,

J. Mol. Spectrosc. 137, 327–353 (1989).

“The High-Resolution Rotational and Torsional Spectra of HSSH”

(67:29) Koichi M. T. Yamada, M. W. Markus, G. Winnewisser, W. Joentgen, R.

Kock, E. Vogel, and H.-J. Altenbach,

16

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Chem. Phys. Lett. 160, 113–117 (1989).

“Isocyanogen as a Pyrolysis Product of N-Cyano-2,3-Diphenyl-Cyclopropeneimine”

(66:5) P. Mittler, G. Winnewisser, and K. M. T. Yamada,

Z. Naturforsch. 44a, 718–722 (1989).

“Submillimeter Wave Spectrum of HS34SH”

(65:13) D. Mauer, G. Winnewisser, and K. M. T. Yamada,

J. Mol. Spectrosc. 136, 380–386 (1989).

“The Rotational Millimeter-Wave Spectrum of Vibrationally Excited cis-HSSSH”

(64:169) Brenda P. Winnewisser, Jurgen Reinstadtler, Koichi M. T. Yamada, and

Jorg Behrend,

J. Mol. Spectrosc. 136, 12–16 (1989).

“Interactive Loomis-Wood Assignment Programs”

(63:0) M. W. Markus, K. M. T. Yamada, and G. Winnewisser,

Z. Naturforsch. 44a, 507–512 (1989).

“High Resolution Spectrum of the CH3NC ν2 Fundamental Band”

(62:19) H.-J. Clar, G. Winnewisser, and Koichi M. T. Yamada,

J. Mol. Structure 190, 447–456 (1988).

“Pressure Broadening and Lineshift in the ν2 Band of NH3”

(61:15) D. Mauer, G. Winnewisser, and Koichi M. T. Yamada,

J. Mol. Structure 190, 457–464 (1988).

“The Rotational Spectrum of cis-HSSSH”

(60:13) Frank Holland, Manfred Winnewisser, Clive Jarman, Harry W. Kroto, and

Koichi M. T. Yamada,

J. Mol. Spectrosc. 130, 344–370 (1988).

“The ν3 Band of SCCCS: High-Resolution Fourier Transform and Diode Laser Mea-

surements”

(59:18) G.M. Plummer, D. Mauer, K. M. T. Yamada and K. Moller,

J. Mol. Spectrosc. 130, 407–418 (1988).

“Rotational Spectra of DCCCN in Some Excited Vibrational States”

(58:14) D. Mauer, G. Winnewisser, Koichi M. T. Yamada, J. Hahn, and K. Reinartz,

Z. Naturforsch. 43a, 617–620 (1988).

“Detection of Gas Phase Hydrogentrisulfied, HSSSH”

17

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(57:17) T. Giesen, M. Harter, R. Schieder, G. Winnewisser, and K. M. T. Yamada,

Z. Naturforsch. 43a, 402–406 (1988).

“High Resoltion Spctroscopy using a Stabilized Diode Laser: The 2ν9 Band of

HNO3”

(56:3) P. Wallraff, G. Winnewisser, and K. M. T. Yamada,

Z. Naturforsch. 43a, 407–410 (1988).

“Diode Laser Spectroscopy in a Supersonic Free Jet: 1,1-Difluroethylene at Low

Temperature”

(55:17) Brenda P. Winnewisser, Manfred Winnewisser, C. Weldon Mathews, and

Koichi M. T. Yamada,

J. Mol. Spectrosc. 126, 460–479 (1987).

“The Rotational Spectrum of HCNO in Excited Bending Combination States”

(54:5) K. M. T. Yamada, M. Bester, M. Tanimoto, and G. Winnewisser,

J. Mol. Spectrosc. 126, 118–128 (1987).

“Pure Rotational Spectra of Cyanopropyne in the v12 = 1 Vibrational State”

(53:9) P. Wallraff, K. M. T. Yamada, and G. Winnewisser,

J. Mol. Spectrosc. 126, 78–81 (1987).

“Determination of the Vibrational Temperature of OCS in a Supersonic Free Jet”

(52:5) Koichi M. T. Yamada and Wolfgang Klebsch,

J. Mol. Spectrosc. 125, 380–392 (1987).

“High Temperature Spectrum of OCS in a dc Discharge by Diode Laser Spec-

troscopy”

(51:20) P. Wallraff, K. M. T. Yamada, and G. Winnewisser,

Z. Naturforsch. 42a, 246–252 (1987).

“Diode Laser Study of Rotational Temperature and Line Shape of Molecules in

Supersonic Free Jets”

(50:15) K. M. T. Yamada and H. Burger,

Z. Naturforsch. 41a, 1021–1023 (1986).

“The ν5 and ν6 Fundamental Bands of HCCCN”

(49:55) K. M. T. Yamada and R. A. Creswell,

J. Mol. Spectrosc. 116, 384–405 (1986).

“Rotational Spectrum of HCCCN in Some Excited Vibrational States”

18

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(48:8) K. M. T. Yamada and G. Winnewisser,

Z. Naturforsch. 40a, 476–478 (1985).

“Analysis of “Hot” Bands Associating to the ν2 Fundamental Band of HC5N”

(47:12) W. Klebsch, M. Bester, K. M. T. Yamada, G. Winnewisser, W. Joentgen,

H.-J. Altenbach, and E. Vogel,

Astron. Astrophys. 152, L12–L13 (1985).

“Millimeter Wave Spectrum of Tricarbon Monoxide, CCCO”

(46:10) Jun Nakagawa, Koichi M. T. Yamada, and Gisbert Winnewisser,

J. Mol. Spectrosc. 112, 127–141 (1985).

“Infrared Diode Laser Spectrum of the CH3CN ν2 Band”

(45:17) P. Wallraff, K. M. T. Yamada, R. Schieder, and G. Winnewisser,

J. Mol. Spectrosc. 112, 163–172 (1985).

“A digitally Controlled Diode Laser Spectrometer: Infrared Spectrum of the ν4 Band

of Acetonitrile beween 890 and 960 cm−1”

(44:107) K. M. T. Yamada, F. W. Birss, and M. R. Aliev,

J. Mol. Spectrosc. 112, 347–356 (1985).

“Effective Hamiltonian for Polyatomic Linear Molecules”

(43:14) H.-J. Clar, M. Reich, R. Schieder, G. Winnewisser, and K. M. T. Yamada,

J. Mol. Spectrosc. 112, 447–458 (1985).

“Diode Laser Spectrum of the ν6 Band of CH3I using a Novel Etalon as a Calibration

Scale”

(42:13) Jun Nakagawa, Koichi Yamada, Manfred Bester, and Gisbert Winnewisser,

J. Mol. Spectrosc. 110, 74–85 (1985).

“Millimeter Wave Spectra and Internal Rotation of 1-Silyl-propyne, CH3-CC-SiH3”

(41:14) Jurgen Vogt, Manfred Winnewisser, Koichi Yamada, and G. Winnewisser,

Chem. Phys. 83, 309–318 (1984).

“The Fourier Transform and Diode Laser Spectrum of the ν2 Band of Diazomethane”

(40:8) H.-J. Clar, Koichi Yamada, G. Winnewisser, F. W. Birss, and H.P. Gush,

Can. J. Phys. 62, 1834–1843 (1984).

“The ν1 and ν5 Bands of D2CO and improved Ground State Constants”

(39:15) M. Bester, Koichi Yamada, G. Winnewisser, W. Joentgen, H.-J. Altenbach,

and E. Vogel,

19

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Astron. Astrophys. 137, L20–L22 (1984).

“Millimeter Wave Spectrum of Methyldiacetylene, CH3C4H”

(38:3) A. Guarnieri, G. Tolkmit, M. Bester, S. Urban, Koichi Yamada, and G.

Winnewisser,

J. Mol. Spectrosc. 106, 22–28 (1984).

“The Pure Inversion Spectrum of 15ND3 in the v2 = 1 State”

(37:40) S. Urban, D. Papousek, M. Bester, Koichi Yamada, G. Winnewisser, and A.

Guarnieri,

J. Mol. Spectrosc. 106, 29–37 (1984).

“Simultaneous Analysis of the Microwave and Infrared Spectra of 14ND3 and15ND3

for the ν2 Excited State”

(36:9) W. Klebsch, Koichi Yamada, and G. Winnewisser,

J. Mol. Spectrosc. 99, 479–481 (1983).

“Diode Laser Spectrum of OCS in a dc Discharge”

(35:4) Koichi Yamada, Regina Best, and G. Winnewisser,

Z. Naturforsch. 38a, 1296–1308 (1984).

“Diode Laser Spectrum of HCCCN: CN Stretching Band”

(34:15) W. Klebsch, Koichi Yamada, and G. Winnewisser,

Z. Naturforsch. 38a, 157–162 (1983).

“Diode Laser Spectrum of OCS – The ν1 Band at 2062 cm−1”

(33:30) M. Bester, M. Tanimoto, B. Vowinkel, G. Winnewisser, and Koichi Yamada,

Z. Naturforsch. 38a, 64–67 (1983).

“Rotational Spectrum of Methylcyanoacetylene – A new Millimeter Wave Spectrom-

eter”

(32:12) M. Bester, S. Urban, K. Yamada, and G. Winnewisser,

Astron. Astrophys. 121, L13–L14 (1983).

“The Nuclear Hyperfine Structure of Deuterated Ammonia”

(31:101) S. Urban, D. Papousek, J. Kaupinen, Koichi Yamada, and G. Winnewisser,

J. Mol. Spectrosc. 101, 1–15 (1983).

“The ν2 Band of 14NH3: A Calibration Standard with Better than 1x10−4 cm−1

Precision”

(30:39) S. Urban, D. Papousek, S.P. Belov, A. F. Krupnov, M. Yu. Tretyakov, Koichi

20

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Yamada, and G. Winnewisser,

J. Mol. Spectrosc. 101, 16–29 (1983).

“A Simultaneous Analysis of the Microwave, Submillimeter Wave, and Infrared

Transitions Between the Ground and the ν2 Inversion-Rotation Levels of 15NH3”

(29:45) Koichi Yamada,

Z. Naturforsch. 38a, 821–834 (1983).

“Effect of Phase Choices in Rovibrational Wavefunctions on the Labeling of K- and

ℓ-type Doubling in Molecular Energy Levels”

(28:5) M. Tanimoto, Koichi Yamada, G. Winnewisser, and J.J. Christiansen,

J. Mol. Spectrosc. 100, 151–163 (1983).

“Diode Laser Spectrum of HCCI Near 5 µm: The ν2 Fundamental and Accompa-

nying Hot Bands”

(27:14) B. Lemoine, Koichi Yamada, and G. Winnewisser,

Ber. Bunsenges. Phys. Chem. 86, 795–797 (1982).

“Diode Laser Spectrumof the Fundamental ν2 band of HNCO”

(26:8) Koichi Yamada and Gisbert Winnewisser,

J. Mol. Spectrosc. 90, 596–599 (1981).

“Diode Laser Spectrum of HCC13CN: The ν2 Band at 5 µm”

(25:28) Koichi Yamada and Gisbert Winnewisser,

Z. Naturforsch. 36a, 1052–1056 (1981).

“Detection of the Infrared Spectrum of Cyanobutadiyne,HC5N”

(24:9) Masao Suzuki, Koichi Yamada, and Michio Takami,

J. Mol. Spectrosc. 88, 207–218 (1981).

“Centrifugal Distortion Constants and Force Field of HClCO”

(23:20) Manfred Winnewisser, E. Walter Peau, Koichi Yamada, and Jorn Johs.

Christiansen,

Z. Naturforsch. 36a, 819–830 (1981).

“Analysis of the Microwave Spectrum of Tricarbon Oxide Sulfide, OCCCS, in Highly

Excited Bending States”

(22:22) Koichi Yamada and Gisbert Winnewisser,

Z. Naturforsch. 36a, 23–29 (1981).

“Diode Laser Spectrum of HCCCN near 5 µm. The Hot Bands”

21

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(21:22) R. Guccione-Gush, H.P. Gush, R. Schieder, K. Yamada, and G. Winnewisser,

Phys. Rev. A 23, 2740–2743 (1981).

“Doppler-Free Two Photon Absorption of NH3 Using a CO2 and Diode Laser”

(20:13) Koichi Yamada and Michio Takami,

J. Mol. Spectrosc. 84, 431–446 (1980).

“High Resolution Infrared Spectrum of Hydrazoic Acid: The ν3 Fundamental by a

Tunable Diode Laser”

(19:68) Koichi Yamada, Manfred Winnewisser, Gisbert Winnewisser, L. B. Szalan-

ski, and M. C. L. Gerry,

J. Mol. Spectrosc. 79, 295–313 (1980).

“Ground State Spectroscopic Constants of H15NCS, HN13CS, and HNC34S, and the

Molecular Structure of Isothiocyanic Acid”

(18:28) Koichi Yamada, R. Schieder, G. Winnewisser, and A. W. Mantz,

Z. Naturforsch. 35a, 690–693 (1980).

“Diode Laser Spectrum of HCCCN near 5 µm”

(17:29) Koichi Yamada,

J. Mol. Spectrosc. 81, 139–151 (1980).

“Resonance Between Ground and Excited Vibrational State due to the Centrifugal

Distortion Coupling in the Rotational Spectrum of HNCO”

(16:121) Koichi Yamada,

J. Mol. Spectrosc. 79, 323–344 (1980).

“Molecular Structure and Centrifugal Distortion Constants of Isocyanic Acid from

the Microwave, Millimeter Wave, and Far Infrared Spectra”

(15:34) M. C. L. Gerry, K. Yamada, and G. Winnewisser,

J. Phys. Chem. Ref. Data 8, 107–123 (1979).

“Microwave Spectrum of Molecules of Astrophysical Interest: Vinyl Cyanide”

(14:24) Koichi Yamada, Manfred Winnewisser, Gisbert Winnewisser, L. B. Szalan-

ski, and M. C. L. Gerry,

J. Mol. Spectrosc. 78, 189–202 (1979).

“Ground State Spectroscopic Constants of Isothiocyanic Acid, HNCS, from its Mi-

crowave and Millimeter Wave Spectra Combined with Far Infrared Data”

(13:8) Koichi Yamada and Manfred Winnewisser,

J. Mol. Spectrosc. 72, 484–501 (1978).

22

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“The a-type Rotational Spectrum of HNCS in the Excited Bending States”

(12:13) L. B. Szalanski, M. C. L. Gerry, G. Winnewisser, K. Yamada, and M. Win-

newisser,

Can. J. Phys. 56, 1297–1303 (1978).

“Ground State Spectroscopic Constants and Electric Dipole Moment of DNCS from

its Microwave and Millimeter Wave Spectra”

(11:26) Koichi Yamada,

J. Mol. Spectrosc. 68, 423–451 (1977).

“The a-type Rotational Spectrum of Isocyanic Acid, HNCO, in the Excited Bending

States”

(10:26) Koichi Yamada and Manfred Winnewisser,

J. Mol. Spectrosc. 68, 307–316 (1977).

“The b-type Rotational Transitions of HNCO in the Lowest Excited Vibrational

State”

( 9:22) K. Yamada, M. Winnewisser, G. Winnewisser, L. B. Szalanski, and M. C. L.

Gerry,

J. Mol. Spectrosc. 64, 401–414 (1977).

“Inversion of the Ka = 0 and 1 Rotational Levels in the Lowest Excited Vibrational

State of HNCS”

( 8:24) Toru Nakagawa, Koichi Yamada, and Kozo Kuchitsu,

J. Mol. Spectrosc. 63, 485–508 (1976).

“Vibration-Rotation Spectrum of Formaldehyde. CH Stretching Fundamentals ν1

and ν5”

( 7:93) Koichi Yamada and Manfred Winnewisser,

Z. Naturforsch. 31a, 139–144 (1976).

“A Parameter to Quantify Molecular Quasilinearity”

( 6:25) Koichi Yamada and Manfred Winnewisser,

Z. Naturforsch. 31a, 131–138 (1976).

“Comments on Quartic Centrifugal Distortion Constants for Asymmetric Top Mole-

cules”

( 5:22) Koichi Yamada and Manfred Winnewisser,

Z. Naturforsch. 30a, 672–689 (1975).

“Ground State Centrifugal Distortion Constants of Vinyl Isocyanide, CH2-CH-NC,

23

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from the Microwave an Millimeter Wave Rotational Spectra”

( 4:53) Koichi Yamada, Brenda P. Winnewisser, and Manfred Winnewisser,

J. Mol. Spectrosc. 56, 449–470 (1975).

“Vibration-Rotation Interactions in HCNO Caused by Accidental resonances and

Enhanced by the Quasi-Linearity of the Molecule”

( 3:21) Keiichi Tanaka, Koichi Yamada, Toru Nakagawa, Kozo Kuchitsu, and J.

Overend,

J. Mol. Spectrosc. 54, 243–260 (1975).

“Infrared Spectrum of Formaldehyde – Coriolis Interactions in the Combination

Bands ν2 + ν6 and ν2 + ν3”

( 2:17) Koichi Yamada, Toru Nakagawa, and Kozo Kuchitsu,

J. Mol. Spectrosc. 51, 399–421 (1974).

“Correlation Between Energy Levels of Linear and Bent X2Y2 Molecules”

( 1:128) Koichi Yamada, Toru Nakagawa, Kozo Kuchitsu, and Yonezo Morino,

J. Mol. Spectrosc. 38, 70–83 (1971).

“Band Contour Analysis of the ν1 and ν5 Fundamentals of Formaldehyde”

24

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Part 2: Review Articles and others

( R7) Keiichi Tanaka, Kensuke Harada, and Koichi M. T. Yamada,

“Handbook of High-Resolution Spectroscopy” Vol. II, pp.853–896,

M. Quack and Frederic Merkt Eds. John Wiley & Sons, UK, 2011.

“THz and Submillimeter-wave Spectroscopy of Molecular Complexes”

( R6) Koichi M. T. Yamada and Gisbert Winnewisser, Eds.,

Springer Tracts in Modern Physics, Vol. 241, Springer, Heidelberg, 2011.

“Interstellar Molecules: Their Laboratory and Interstellar Habitat”

( R5) Per Jensen, Stepan Urban, Koichi M. T. Yamada, and Jon T. Hougen,

J. Mol. Spectrosc. 256, 1–3 (2009).

“PRAHA 2008. The 20th International Conference on High Resolution Molecular

Spectroscopy, Prague, Czech Republic, September 2–6, 2008”

( R4) P. Jensen, Frank De Lucia, Koichi Yamada,

J. Mol. Struct. 695-696, 1–3 (2004).

“Brenda and Manfred Winnewisser”

( R3) M. Liedtke, T. Klaus, R. Schieder, G. Winnewisser, K. M. T. Yamada, V.

Wagner, M. Winnewisser, O. P. Pavlovsky, G. M. Altshuller, O. K. Anikin, A.

A. Uljanov, S. P. Belov, E. N. Karyakin, A. F. Krupnov, A. P. Shkaev, M. Yu.

Tretyakov, and N. F. Zobov,

Physics and Chemistry of Interstellar Molecular Clouds. Proceeding of the

2nd Cologne-Zermatt Symposium, G. Winnewisser and G. Pelz, Eds., p. 370–372,

Springer, Berlin, 1995.

“New Techniques for Submillimeter Precision Broadband Spectroscopy”

( R2) G. Winnewisser, M. R. Aliev, and K. Yamada,

Proceedings of an ESA Workshop, ESA SP-189, 23–28 (1982).

“Intersteller Hydrides”

( R1) G. Winnewisser, K. Yamada, R. Schieder, R. Guccione-Gush, and H. P. Gush,

Laser Spectroscopy V, pp.268–271, A. R. W. McKeller, T. Oka, B. P. Stoicheff,

Eds., Springer, Berlin-New York, 1981.

“Molecular Spectroscopy Using Diode and Combined Diode – CO2 Lasers”

25

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Part 3: Publications in Japanese

( J8) Koichi Yamada and Yoshihiro Sumiyoshi

J. Spec. Soc. Jpn. (Bunko Kenkyu), 65, 265–277 (2016).

“Chiral Molecular Science: Possibility for determining the absolute configuration of

chiral molecules by high resolution spectroscopy”.

( J7) Koichi Yamada,

Japanese Scientists in Science 2015, pp 24, American Association for the

Advancement for Science (AAAS), NY, March 2016.

“Experimental ground-state combination differences of CH+5 ”

( J6) Koichi Yamada,

Molecular Science, 9, A0074 (2015).

“Being charmed by Mysterious High-resolution Spectra of Molecules”

( J5) Koichi Yamada,

J. Spec. Soc. Jpn. (Bunko Kenkyu), 61, 234–235 (2012).

“Can high-resolution spectroscopy contiribute to the Boltzmann constant determi-

nation”.

( J4) Koichi Yamada, Atsushi Onae, Feng Hong, and Hajime Inaba,

Hikari Aliance, 19 21–25 (2008).

“Determination of the Boltzmann constant by high precision spectroscopy”

( J3) Koichi M. T. Yamada and Frank Lewen,

J. Spec. Soc. Jpn. (Bunko Kenkyu), 54, 116–129 (2005).

“Terahertz·Far-Infrared Spectroscopy II. High Resolution Molecular Spectroscopy”.

( J2) Koichi M. T. Yamada

J. Spec. Soc. Jpn. (Bunko Kenkyu), 45, 175–182 (1996).

“Recent Progress in Terahertz Spectroscopy”.

( J1) Koichi Yamada

Chemical Education (Kagaku Kyoiku), 32, 140–143 (1984).

“Department of Chemistry at Universities in West Germany”.

26