Beamsplitters & Polarizing Optics - skphotonics.com · Beamsplitters & Polarizing Optics In order...

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(T)714-449-0532 w (F)714-449-0531 w [email protected] w www.lattice-eo.com w Lattice Electro Optics 81 High Energy Beamsplitters (BS)……………….………………………….. 82 Wide Band Beamsplitters (WBS)………………….………………………. 84 Neutral Wide Band Beamsplitters (NWB)………….…………………….. 85 Non-Polarizing Beamsplitters (NP)……………………………………….. 86 Longwave Pass Dichroic Beamsplitters (LWP)…………..……………. 87 Shortwave Pass Dichoic Beamsplitters (SWP)……………..………….. 88 Thin Film Polarizer (TP)…………………………………………….………. 89 Wide Band Thin Film Polarizer (WTP)……………………………….…… 90 Etalon (SE)…………………………………………………………………….. 91 UV Polarizing Beamsplitter Cubes (PBU)………………….…..………... 92 Polarizing Beamsplitter Cubes (PBS)……………………….……..…….. 93 Wide Band Polarizing Beamsplitter Cubes (PBW)………………..…… 94 Wide Band Non-Polarizing Beamsplitter Cubes (NPW)….………..….. 95 Non-Polarizing Beamsplitter Cubes (NPB)…………………………..…. 96 Partially Reflective Beamsplitter cubes (PBC)…………….………….... 97 Glan-Laser Double Escape Polarizers (PCGL)…………………………. 98 Glan-Thompson Linear Polarizers (PCGT)……………………………… 99 Glan-Taylor Polarizers (PCGA)…………………….….………………..… 99 Rochon Polarizers (PCRO)……………………………..………………….. 100 Wollaston Polarizers (PCWO)………………………….………………….. 100 Zero Order Quartz Waveplates (CWO)…………………..……………….. 101 Multiple Order Quartz Waveplates (CWM)………………………………. 102 Quartz Rotators (QR)……………………………………………..…………. 103 Birefringent Filters (BF)…………………………………………….………. 104 Optical Beam Isolators (BI)………………………………………………… 105 Beamsplitters & Polarizing Optics In order to properly manipulate a light energy, many different combinations of beamsplitters are required as well as laser mirrors. Our beamsplitters come with multiple categories; such as, energy beamsplitters, dichroic beamsplitters, or even Fabry-Perot etalons. Controlling polarity of the incident light energy should be considered when a light travels in angles other than the normal to the optics plane. Lattice Electro Optics offers a variety of polarizing optics and devices. They are polarizing or non-polarizing beamsplitters, calcite polarizers, waveplates, etc. If you need a special beamsplitter or polarizer, please contact our application engineers who are only one phone call away. Sometimes, you may need exotic optical materials to satisfy your needs. We are ready to assist you in this case, too. Table of Contents

Transcript of Beamsplitters & Polarizing Optics - skphotonics.com · Beamsplitters & Polarizing Optics In order...

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Table of Contents High Energy Beamsplitters (BS)……………….………………………….. 82 Wide Band Beamsplitters (WBS)………………….………………………. 84 Neutral Wide Band Beamsplitters (NWB)………….…………………….. 85

Non-Polarizing Beamsplitters (NP)……………………………………….. 86

Longwave Pass Dichroic Beamsplitters (LWP)…………..……………. 87 Shortwave Pass Dichoic Beamsplitters (SWP)……………..………….. 88

Thin Film Polarizer (TP)…………………………………………….………. 89 Wide Band Thin Film Polarizer (WTP)……………………………….…… 90

Etalon (SE)…………………………………………………………………….. 91

UV Polarizing Beamsplitter Cubes (PBU)………………….…..………... 92 Polarizing Beamsplitter Cubes (PBS)……………………….……..…….. 93 Wide Band Polarizing Beamsplitter Cubes (PBW)………………..…… 94 Wide Band Non-Polarizing Beamsplitter Cubes (NPW)….………..….. 95 Non-Polarizing Beamsplitter Cubes (NPB)…………………………..…. 96 Partially Reflective Beamsplitter cubes (PBC)…………….………….... 97

Glan-Laser Double Escape Polarizers (PCGL)…………………………. 98 Glan-Thompson Linear Polarizers (PCGT)……………………………… 99 Glan-Taylor Polarizers (PCGA)…………………….….………………..… 99 Rochon Polarizers (PCRO)……………………………..………………….. 100 Wollaston Polarizers (PCWO)………………………….………………….. 100

Zero Order Quartz Waveplates (CWO)…………………..……………….. 101 Multiple Order Quartz Waveplates (CWM)………………………………. 102 Quartz Rotators (QR)……………………………………………..…………. 103

Birefringent Filters (BF)…………………………………………….………. 104 Optical Beam Isolators (BI)………………………………………………… 105

Beamsplitters & Polarizing Optics

In order to properly manipulate a light energy, many different combinations of beamsplitters are required as well as laser mirrors. Our beamsplitters come with multiple categories; such as, energy beamsplitters, dichroic beamsplitters, or even Fabry-Perot etalons. Controlling polarity of the incident light energy should be considered when a light travels in angles other than the normal to the optics plane. Lattice Electro Optics offers a variety of polarizing optics and devices. They are polarizing or non-polarizing beamsplitters, calcite polarizers, waveplates, etc. If you need a special beamsplitter or polarizer, please contact our application engineers who are only one phone call away. Sometimes, you may need exotic optical materials to satisfy your needs. We are ready to assist you in this case, too.

Table of Contents

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Specifications Material: BK7 or Fused Silica Parallelism: < 3 arc min Clear Aperture: > 85% of central dimension Chamfer: 0.3mm × 45° Surface Figure: λ/10 at 632.8nm Surface Quality: 10-5 scratch-dig Power: Up to 10-20 J/cm2

for 10 nsec pulse typical @1064nm

Lattice’s high energy beamsplitters are used to split the incoming energy into two or more beams with different angles. Also, they can be used as beamcombiners. The second side is normally coated with high power antireflection (AR) coating to ensure no ghost image would appear.

High Energy Beamsplitters BS

Wavelength (nm)

460 480 500 520 540 560 580 600

100.0

80.0

60.0

20.0

40.0

0.0

R (%)

R

T AR

Incident

AOI

45°° Beamspiltter

S

UNP

P

45°° AOI

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Standard Wavelength (nm) R(%)

Eximer 157, 193, 248, 308, 352

YAG

213, 262, 263, 266, 349, 351, 355, 524, 527, 532, 1047, 1054, 1064, 2010, 2100, 2940

Others

325, 347, 442, 488, 511, 514.5, 578, 632.8, 694.3, 720-780, 1235, 1300, 1310, 1315, 1319, 1520-1565, 1550, 1560-1620

5±1 15±2 25±3 35±3 45±4 55±4 65±4 75±4 85±3 95±2.5 98±1

10±2 20±3 30±3 40±3 50±4 60±4 70±4 80±4 90±3 97±2 99±0.5

Other wavelengths and R(%) values are available upon request.

Ordering Example

BS 1064 B 1025 45P

Product Code

Reflectance (%)

Substrate Material Code

Size Code

AOI & Polarization

Code

Wavelength (nm)

R50

High Energy Beamsplitters BS

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Specifications Material: BK7 Parallelism: < 3 arc min Clear Aperture: > 85% of central dimension Chamfer: 0.3mm × 45° Surface Figure: λ/10 at 632.8nm Surface Quality: 10-5 scratch-dig

Part No Wavelength AOI WBS-550-B-1025 450-650 45° WBS-550-B-2038 450-650 45° WBS-550-B-3050 450-650 45° WBS-550-B-4050 450-650 45° WBS-800-B-1025 670-950 45° WBS-800-B-2038 670-950 45° WBS-800-B-3050 670-950 45° WBS-800-B-4050 670-950 45° WBS-1000-B-1025 905-1200 45° WBS-1000-B-2038 905-1200 45° WBS-1000-B-3050 905-1200 45° WBS-1000-B-4050 905-1200 45° WBS-1450-B-1025 1300-1600 45° WBS-1450-B-2038 1300-1600 45° WBS-1450-B-3050 1300-1600 45° WBS-1450-B-4050 1300-1600 45°

Wide Band Beamsplitters WBS

Wavelength (nm) 400 500 600 700 800 900

100.0

80.0

60.0

20.0

40.0

0.0

R (%)

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Specifications Material: BK7 or UV Fused Silica Parallelism: < 3 arc min Clear Aperture: > 85% of central dimension Chamfer: 0.3mm × 45° Surface Figure: λ/10 at 632.8nm Surface Quality: 10-5 scratch-dig T (%): 29 ± 3 % ave. @ Visible R (%): 29 ± 3 % ave. @ Visible A (%): 42 ± 4 % ave. @ Visible

Part No Material Diameter Thickness AR NWB-550-B-1025 BK7 1.00” 0.250” SMAR @Visible NWB-550-B-2038 BK7 2.00” 0.375” SMAR @Visible NWB-550-B-3050 BK7 3.00” 0.500” SMAR @Visible NWB-550-B-4050 BK7 4.00” 0.500” SMAR @Visible NWB-300-UF-1025 UV Fused Silica 1.00” 0.250” SMAR @300nm NWB-200-UF-2038 UV Fused Silica 2.00” 0.375” SMAR @300nm NWB-300-UF-3050 UV Fused Silica 3.00” 0.500” SMAR @300nm

Neutral Wide Band Beamsplitters NWBBS

R

T

SMAR (MgF2)

Inconel

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Specifications

Material: BK7 Parallelism: < 3 arc min Clear Aperture: > 85% of central dimension AOI: 45° Ts, Tp: 50 ± 5 % Rs, Rp: 50 ± 5 % AR: AR coating on S2

Part No Wavelength Diameter Thickness NP-488-B-1025 488 1.00” 0.250” NP-514.5-B-1025 514.5 1.00” 0.250” NP-532-B-1025 532 1.00” 0.250” NP-632.8-B-1025 632.8 1.00” 0.250” NP-670-B-1025 670 1.00” 0.250” NP-680-B-1025 680 1.00” 0.250” NP-780-B-1025 780 1.00” 0.250” NP-830-B-1025 830 1.00” 0.250” NP-1064-B-1025 1064 1.00” 0.250” NP-1320-B-1025 1320 1.00” 0.250” NP-1550-B-1025 1550 1.00” 0.250”

Non-Polarizing Beamsplitters NP

Wavelength (nm) 500 550 600 650 700 750

100.0

80.0

60.0

20.0

40.0

0.0

T (%)

S

P

45°

Ts, Tp

Rs, Rp

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Specifications Material: BK7 or UV Fused Silica Parallelism: < 3 arc min Clear Aperture: > 85% of central dimension Chamfer: 0.3mm × 45° Surface Figure: λ/10 at 632.8nm Surface Quality: 10-5 scratch-dig Power: Up to 10-20 J/cm2

for 10 nsec pulse @1064nm typical

• See YAG Laser Mirrors section for YAG Harmonic Separators.

LWP 45 Rs532 B 1025

Product Code

Reflecting Wavelength (nm)

& Polarization

Material Code

AOI Code

Ordering Example

Tp1064

Transmitting Wavelength (nm)

& Polarization

Size Code

Longwave Pass Dichroic Beamsplitters LWP

Wavelength (nm) 500 600 700 800 900 1000 1100

100.0

80.0

60.0

20.0

40.0

0.0

T (%)

LWP-45-Rs532-Tp1064

S

P

45°° AOI

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Specifications Material: BK7 or UV Fused Silica Parallelism: < 3 arc min Clear Aperture: > 85% of central dimension Chamfer: 0.3mm × 45° Surface Figure: λ/10 at 632.8nm Surface Quality: 10-5 scratch-dig Power: Up to 10-20 J/cm2

for 10 nsec pulse @1064nm typical

Shortwave Pass Dichroic Beamsplitters SWP

SWP 45 Rs1064 B 1025

Product Code

Reflecting Wavelength (nm)

& Polarization

Material Code

AOI Code

Ordering Example

Tp808

Transmitting Wavelength (nm)

& Polarization

Size Code

• See YAG Laser Mirrors section for YAG Harmonic Separators.

Wavelength (nm) 600 700 800 900 1000 1100 1200 1300

100.0

80.0

60.0

20.0

40.0

0.0

T (%)

SWP-45-Rs1064-Tp808

S

P

45°° AOI

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Specifications Material: BK7 or UV Fused Silica Parallelism: < 3 arc min Clear Aperture: > 85% of central dimension Chamfer: 0.3mm × 45° Surface Figure: λ/10 at 632.8nm Surface Quality: 10-5 scratch-dig AOI: 56° typical Tp > 95% Rs > 99% Extinction Ratio: Tp/Ts > 100 Power: Up to 10-20 J/cm2

for 10 nsec pulse @1064nm typical

Part No Wavelength Size TP-532-B-1025 532nm 1” Dia. x 0.25” Thk. TP-532-B-2025 532nm 2” Dia. x 0.25” Thk. TP-532-B-WR-1106 532nm 1.126” x 0.563” x 0.125” Thk. (Rectangle) TP-800-B-1025 800nm 1” Dia. x 0.25” Thk. TP-800-B-2025 800nm 2” Dia. x 0.25” Thk. TP-800-WR-1106 800nm 1.126” x 0.563” x 0.125” Thk. (Rectangle) TP-1064-B-1025 1064nm 1” Dia. x 0.25” Thk. TP-1064-B-2025 1064nm 2” Dia. x 0.25” Thk. TP-1064-B-WR-1106 1064nm 1.126” x 0.563” x 0.125” Thk. (Rectangle)

• Other wavelengths are also available upon request.

Lattice’s thin film polarizers are designed to provide the maximum extinction ratio at near Brewster’s angle. Therefore, angle tuning may be required to optimize the highest extinction between transmitted and reflected beams. Typical tuning angle is 53°-59°

Thin Film Polarizers TP

Wavelength (nm) 1000 1020 1040 1060 1080 1100 1120 1140

T (%)

TP-1064

P

S

θB S

P

100.0

80.0

60.0

20.0

40.0

0.0

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Specifications Material: BK7 or UV Fused Silica Parallelism: < 3 arc min Clear Aperture: > 85% of central dimension Chamfer: 0.3mm × 45° Surface Figure: λ/10 at 632.8nm Surface Quality: 10-5 scratch-dig AOI: 72° ± 3° (To be angle tuned

for optimum performance) Tp: > 98% Rs: > 75% Extinction Ratio: Tp/Ts > 15

Part No Wavelength Size WTP-800-B-1025 800nm 1” Dia. x 0.25” Thk. WTP-800-B-2025 800nm 2” Dia. x 0.25” Thk. WTP-800-B-WR-1106 800nm 1.126” x 0.563” x 0.125” Thk. (Rectangle)

• Other wavelengths are also available upon request.

Its low GVD (Group Velocity Dispersion) characteristics are especially suitable

for Utrafast laser intra-cavity applications.

Wide Band Thin Film Polarizers WTP

S

P

72 °

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Specifications Material: UV Fused Silica Diameter Tolerance: +0/-0.010” Thickness Tolerance: ± 0.010”

or ± 25% of thickness for 1mm or less

Transmitted Distortion: λ/10 at 632.8nm Power: 10-20 J/cm2

at 10nsec pulse

Lattice’s solid etalons are based a Fabry-

Perot interference principle. Their substrate

is highly polished UV grade fused silica to

ensure near zero wedge effect and the high

power reflectance coatings are provided on

both surfaces to maintain certain finesse.

2

12

2

äsin

ð1T

+= F

where,

F: finesse, R-1

R: reflectance of the surface

δ: internal phase shift, ë

ndcosá4π

n: index of refraction d: material thickness α: internal angle

And also free spectral range(RFS) and FWHM can be given as

2nd

1RFS = and

FFSR

FWHM =

Ordering Example

SE 10 532

Product Code

Thickness Code (mm)

Wavelength (nm)

Diameter Code

(φ 1.0”)

Reflectance (%)

0.5 50

Etalon

SE

0

10

20

30

40

50

60

70

80

90

100

10 20 30 40 50 60 70 80 90 100

Fin

esse

, F =

(π√

R)/

(1-R

)

R (%)

Tra

nsm

itta

nce

(%)

Frequency

100.0

80.0

60.0

20.0

40.0

0.0

FFSR

FWHM =

2nd

1RFS =

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Specifications Material: UV Fused Silica Dimensional Tolerance: ± 0.020” Clear Aperture: > 80% of central circular

dimension Wavefront Distorsion λ/4 at 632.8nm Surface Quality: 20-10 scratch-dig Tp: > 90% Rs: > 99% Extinction Ratio: Tp/Ts > 102 Power: Up to 10-20 mJ/cm2

for 10 nsec pulse @266nm typical

Part No 0.5” 1.00”

Wavelength

PBU-248-050 PBU-248-100 248nm PBU-252-050 PBU-252-100 252nm PBU-257-050 PBU-257-100 257nm PBU-266-050 PBU-266-100 266nm PBU-308-050 PBU-308-100 308nm PBU-352-050 PBU-352-100 352nm PBU-355-050 PBU-355-100 355nm

UV Polarizing Beamsplitter Cubes PBU

S

P

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Specifications Material: BK7 Dimensional Tolerance: ± 0.020” Clear Aperture: > 80% of central dimension Wavefront Distorsion λ/4 at 632.8nm Surface Quality: 20-10 scratch-dig Tp: > 95% Rs: > 99.9% Extinction Ratio: Tp/Ts > 103 Power: Up to 100 mJ/cm2

for 10 nsec pulse @1064nm typical

Part No 5mm 10mm 0.50” 1.00” 1.50” 2.00”

Wavelength

PBS-441.8-02 PBS-441.8-04 PBS-441.8-05 PBS-441.8-10 PBS-441.8-15 PBS-441.8-20 441.8 PBS-488-02 PBS-488-04 PBS-488-05 PBS-488-10 PBS-488-15 PBS-488-20 488 PBS-500-02 PBS-500-04 PBS-500-05 PBS-500-10 PBS-500-15 PBS-500-20 500 PBS-514.5-02 PBS-514.5-04 PBS-514.5-05 PBS-514.5-10 PBS-514.5-15 PBS-514.5-20 514.5 PBS-532-02 PBS-532-04 PBS-532-05 PBS-532-10 PBS-532-15 PBS-532-20 532 PBS-632.8-02 PBS-632.8-04 PBS-632.8-05 PBS-632.8-10 PBS-632.8-15 PBS-632.8-20 632.8 PBS-670-02 PBS-670-04 PBS-670-05 PBS-670-10 PBS-670-15 PBS-670-20 670 PBS-780-02 PBS-780-04 PBS-780-05 PBS-780-10 PBS-780-15 PBS-780-20 780 PBS-800-02 PBS-800-04 PBS-800-05 PBS-800-10 PBS-800-15 PBS-800-20 800 PBS-808-02 PBS-808-04 PBS-808-05 PBS-808-10 PBS-808-15 PBS-808-20 808 PBS-830-02 PBS-830-04 PBS-830-05 PBS-830-10 PBS-830-15 PBS-830-20 830 PBS-850-02 PBS-850-04 PBS-850-05 PBS-850-10 PBS-850-15 PBS-850-20 850 PBS-905-02 PBS-905-04 PBS-905-05 PBS-905-10 PBS-905-15 PBS-905-20 905 PBS-930-02 PBS-930-04 PBS-930-05 PBS-930-10 PBS-930-15 PBS-930-20 930 PBS-1047-02 PBS-1047-04 PBS-1047-05 PBS-1047-10 PBS-1047-15 PBS-1047-20 1047 PBS-1053-02 PBS-1053-04 PBS-1053-05 PBS-1053-10 PBS-1053-15 PBS-1053-20 1053 PBS-1064-02 PBS-1064-04 PBS-1064-05 PBS-1064-10 PBS-1064-15 PBS-1064-20 1064 PBS-1319-02 PBS-1319-04 PBS-1319-05 PBS-1319-10 PBS-1319-15 PBS-1319-20 1319 PBS-1550-02 PBS-1550-04 PBS-1550-05 PBS-1550-10 PBS-1550-15 PBS-1550-20 1550

Polarizing Beamsplitter Cubes PBS

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Specifications Material: Schott SF2 or equivalent Dimensional Tolerance: ± 0.020” Clear Aperture: > 80% of central dimension Wavefront Distorsion λ/4 at 632.8nm Surface Quality: 20-10 scratch-dig Tp > 90% average Rs > 99.5% average Extinction Ratio: Tp/Ts > 500 Power: 100 mJ/cm2

for 10 nsec pulse @1064nm, typical

Part No 0.5” 1.00”

Wavelength

PBW-575-05 PBW-575-10 450-700nm PBW-800-05 PBW-800-10 650-950nm PBW-1100-05 PBW-1100-10 900-1300nm PBW-1300-05 PBW-1300-10 1050-1620nm

Wide Band Polarizing Beamsplitter Cubes PBW

Wavelength (nm)

400 500 600 700 800 900

100.0

80.0

60.0

20.0

40.0

0.0

T (%)

S

P

S

P

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Specifications Material: BK7 Dimensional Tolerance: ± 0.020” Clear Aperture: > 80% of central dimension Wavefront Distorsion λ/4 at 632.8nm Surface Quality: 20-10 scratch-dig Ts, p 50 ± 3 % Rs, p 50 ± 3 % Ts-Tp < 5% Rs-Rp < 5% Power: Up to 100 mW/cm2

for 10 nsec pulse @1064nm, typical

Part No 0.50” 1.00”

Wavelength (nm)

NPB-441.6-05 NPB-441.6-05 441.6 NPB-500-05 NPB-500-05 488-514.5 NPB-532-05 NPB-532-05 532 NPB-632.8-05 NPB-632.8-05 632.8 NPB-670-05 NPB-670-05 670 NPB-780-05 NPB-780-05 780 NPB-830-05 NPB-830-05 830 NPB-1064-05 NPB-1064-05 1064 NPB-1300-05 NPB-1300-05 1300 NPB-1550-05 NPB-1550-05 1550

NPB

S

P

Wavelength (nm)

100.0

80.0

60.0

20.0

40.0

0.0 560 580 600 620 640 660 680 700 720

T (%)

Non-polarizing Beamsplitter Cubes

S

P

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Specifications Material: BK7 Dimensional Tolerance: ± 0.020” Clear Aperture: > 80% of central dimension Wavefront Distorsion λ/4 at 632.8nm Surface Quality: 20-10 scratch-dig Ts, p 45 ± 5 % average Rs, p 45 ± 5 % average Ts-Tp < 10% Rs-Rp < 10% Absorption <10% average Power: Up to 100 mW/cm2

for 10 nsec pulse @1064nm, typical

Part No 10mm 0.50” 20mm 1.00” 1.50”

Wavelength

NPW-550-04 NPW-550-05 NPW-550-08 NPW-550-10 NPW-550-15 400-700nm NPW-900-04 NPW-900-05 NPW-900-08 NPW-900-10 NPW-900-15 700-1100nm NPW-1350-04 NPW-1350-05 NPW-1350-08 NPW-1350-10 NPW-1350-15 1100-1600nm

Wide Band Non-polarizing Beamsplitter Cubes NPW

S

P

Wavelength (nm) 400 500 600 700

100.0

80.0

60.0

20.0

40.0

0.0

T (%)

Wavelength (nm) 700 800 900 1000 1100

100.0

80.0

60.0

20.0

40.0

0.0

T (%)

Wavelength (nm) 1100 1200 1300 1400 1500 1600

100.0

80.0

60.0

20.0

40.0

0.0

T (%)

S

P

S

P S P

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Specifications

Material: BK7 Dimensional Tolerance: ± 0.020” Clear Aperture: > 80% of central dimension Wavefront Distorsion λ/4 at 632.8nm Surface Quality: 20-10 scratch-dig Power: Up to 100 mW/cm2

for 10 nsec pulse @1064nm, typical

Any wavelength 400nm – 2100nm

PBC 1064 P

Product Code

Reflectance (%)

Polarization Code

Wavelength (nm)

Ordering Example

Size Code

04 50

20 ± 3 30 ± 3 33.3 ± 3 40 ± 4 50 ± 4 60 ± 4 66.7 ± 4 70 ± 4 80 ± 4 90 ± 3

02: 5mm 04: 10mm 05: 0.5” 08: 20mm 10: 1.0” 15: 1.5” 20: 2.0”

P S UNP

Partially Reflective Beamsplitter Cubes PBC

R

T

Wavelength (nm)

100.0

80.0

60.0

20.0

40.0

0.0 950 1000 1050 1100 1150 1200

R (%)

S

UNP

P

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Housing Part No. Clear Aperture Diameter Length

PCGL-04 10mm 1.00” 1.03” PCGL-06 15mm 1.18” 1.31” PCGL-08 20mm 1.496” 1.67”

Specifications Material: High Quality Calcite Dimensional Tolerance: ± 0.005” Wavefront Distortion: λ/4 at 632.8nm Beam Deviation: < 3 arc min Extinction Ratio: 105 : 1 Transmission: Tp > 95% Antireflection Coating: SMAR centered at Visible Field of View: 7.7° Housing: Black anodized aluminum Power: Up to 10 mJ/cm2 for

10 nsec pulse at 1064nm typical

L

D

Glan-Laser Double Escape Polarizers PCGL

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Specifications

Material: High Quality Calcite Dimensional Tolerance: ± 0.005” Wavefront Distortion: λ/4 at 632.8nm Beam Deviation: < 3 arc min Extinction Ratio: 105 : 1 Transmission: Tp > 95% Antireflection Coating: SMAR centered at visible Field of View: 15° ± 1° Housing: Black anodized aluminum Power: Up to 10 mJ/cm2 for

10 nsec pulse at 1064nm typical

Specifications Material: High Quality Calcite Dimensional Tolerance: ± 0.005” Wavefront Distortion: λ/4 at 632.8nm Beam Deviation: < 3 arc min Extinction Ratio: 105 : 1 Transmission: Tp > 95% Antireflection Coating: SMAR centered visible Field of View: 7.7° Housing: Black anodized aluminum Power: Up to 1J/cm2 for

10 nsec pulse at 1064nm typical

Housing Part No. Clear Aperture Diameter Length

PCGA-04 10mm 1.00” 0.73” PCGA-06 15mm 1.18” 0.91” PCGA-08 20mm 1.496” 1.06”

Housing Part No. Clear Aperture Diameter Length

PCGT-04 10mm 1.00” 1.30” PCGT-06 15mm 1.18” 1.79”

L

D

L

D

Glan-Thompson Linear Polarizers PCGT

Glan-Taylor Polarizers PCGA

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Specifications Material: MgF2 or α-BBO Dimensional Tolerance: ± 0.005” Wavefront Distortion: λ/4 at 632.8nm Beam Separation Angle: 8° Extinction Ratio: 106 : 1 Transmission efficiency: > 95% Antireflection Coatings: SMAR centered at visible Field of View: 6.9° Housing: Black anodized aluminum Power: Up to 1-2 J/cm2 for

10 nsec pulse at 1064nm typical

Housing Part No. Clear Aperture Diameter Length

PCRO-03 8mm 1.00” 0.677” PCRO-04 10mm 1.00” 0.756” PCRO-06 15mm 1.18” 0.953”

Housing Part No. Clear Aperture Diameter Length

PCWO-04 10mm 1.00” 0.728” PCWO-06 15mm 1.18” 0.906”

Specifications Material: High quality Calcite Dimensional Tolerance: ± 0.005” Wavefront Distortion: λ/4 at 632.8nm Beam Deviation: < 3 arc min Extinction Ratio: 105 : 1 Beam Separation Angle: 17.5 ° ± 2.5 ° Transmission efficiency: > 95% Housing: Black anodized aluminum Power: Up to 10 mJ/cm2 for

10 nsec pulse at 1064nm typical

Rochon Polarizers PCRO

Wollaston Polarizers PCWO

L

D

L

D

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Specifications Material: High quality Crystal Quartz Diameter Tolerance: +0/-0.005” Parallelsm: < 1 arc sec

(optically contacted) Clear Aperture > 80 % of central dimension Wavefront Distortion: λ/10 at 632.8nm Surface Quality: 10-5 scratch-dig Retardation Tolerance: λ/500 Power: Up to 10-20 J/cm2 for

10 nsec pulse at 1064nm typical (optically contacted)

CWO 1064

Product Code

Retardation Code

Wavelength (nm)

Ordering Example

Diameter Code

05 02

02: λ/2 retardation 04: λ/4 retardation

04: 10mm 05: 0.5” 06: 15mm 08: 20mm 10: 1.0” 12: 30mm 15: 1.5” 20: 2.0”

• Anodized aluminum housings are available upon request.

Zero Order Quartz Waveplates CWO

D

Optically contacted or cemented

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Specifications Material: High quality Crystal Quartz Diameter Tolerance: +0/-0.005” Parallelsm: < 0.5 arc sec Clear Aperture > 80 % of central dimension Wavefront Distortion: λ/10 at 632.8nm Surface Quality: 10-5 scratch-dig Retardation Tolerance: λ/500 Power: Up to 10-20 J/cm2 for

10 nsec pulse at 1064nm typical

CWM 1064

Product Code

Retardation Code

Wavelength (nm)

Ordering Example

Diameter Code

20 04

• Anodized aluminum housings are available upon request.

Multiple Order Quartz Waveplates CWM

D Optical Axis

02: λ/2 retardation 04: λ/4 retardation

04: 10mm 05: 0.5” 06: 15mm 08: 20mm 10: 1.0” 12: 30mm 15: 1.5” 20: 2.0”

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Specifications Material: Crystal Quartz Diameter Tolerance: +0/-0.005” Parallelsm: < 10 arc sec Clear Aperture: > 80 % of central dimension Wavefront Distortion: λ/4 at 632.8nm Surface Quality: 10-5 scratch-dig Power: Up to 10-20 J/cm2 for

10 nsec pulse at 1064nm typical

Part No 45°° 90°°

Diameter Wavelength

QR-45-04-532 QR-90-04-532 10mm 532nm QR-45-05-532 QR-90-05-532 0.50” 532nm QR-45-08-532 QR-90-08-532 20mm 532nm QR-45-04-1064 QR-90-04-1064 10mm 1064nm QR-45-05-1064 QR-90-05-1064 0.50” 1064nm QR-45-08-1064 QR-90-08-1064 20mm 1064nm

Quartz Rotators QR

Output Beam

Incident Beam

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Specifications Material: Crystal Quartz Diameter Tolerance: +0/-0.005” Thickness Tolerance: ± 20µm Transmitted Wavefront Distortion:

λ/10 at 632.8nm

Surface Quality: 10-5 scratch-dig Clear Aperture: > 85% of central dimension

BF 08

Product Code

Thickness (mm)

Diameter Code

Ordering Example

1.0

From 0.5mm to 6mm with 0.5mm interval

04: 10mm 05: 0.5” 06: 15mm 08: 20mm

Birefringent Filters BF

D

T

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Part No Wavelength (nm) Size Part No Wavelength (nm) Size BI-488-04 488 10mm BI-780-04 780 10mm BI-488-05 488 0.50” BI-780-05 780 0.50” BI-488-10 488 1.00” BI-780-10 780 1.00” BI-514.5-04 514.5 10mm BI-850-04 850 10mm BI-514.5-05 514.5 0.50” BI-850-05 850 0.50” BI-514.5-10 514.5 1.00” BI-850-10 850 1.00” BI-532-04 532 10mm BI-1064-04 1064 10mm BI-532-05 532 0.50” BI-1064-05 1064 0.50” BI-532-10 532 1.00” BI-1064-10 1064 1.00” BI-632.8-04 632.8 10mm BI-1550-04 1550 10mm BI-632.8-05 632.8 0.50” BI-1550-05 1550 0.50” BI-632.8-10 632.8 1.00” BI-1550-10 1550 1.00”

Specifications Material: BK7 & Crystal Quartz Dimensional Tolerance: ± 0.020” Beam Deviation: < 3 arc min Clear Aperture: > 80% of central circular

dimension Wavefront Distortion: λ/4 at 632.8nm Surface Quality: 40-20 scratch-dig Power: Up to 100 mJ/cm2 for

10 nsec pulse at 1064nm typical

Optical Beam Isolators BI

PBSZero Order Waveplates

Reflecting Target

Incident Beam

Output Beam