Cosmogenic exposure dating -principles and applications Quaternary glacial history of Beringia...

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osmogenic exposure dating inciples and applications Quaternary glacial history of Beringia -overview with case studies te Quaternary glacial history f the Eastern Canadian Arctic -the Clyde River Project

Transcript of Cosmogenic exposure dating -principles and applications Quaternary glacial history of Beringia...

Page 1: Cosmogenic exposure dating -principles and applications Quaternary glacial history of Beringia -overview with case studies Late Quaternary glacial history.

Cosmogenic exposure dating

-principles and applications

Quaternary glacialhistory of Beringia-overview with casestudies

Late Quaternary glacial historyof the Eastern Canadian Arctic

-the Clyde River Project

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Firstly, it is great to be here!

Page 3: Cosmogenic exposure dating -principles and applications Quaternary glacial history of Beringia -overview with case studies Late Quaternary glacial history.

My biased reading suggestions:(be familiar with lots more, but be sure to read these)

Quaternary glacial history of Beringia

Late Quaternary glacial history of the Eastern Canadian Arctic

1. Brigham-Grette, 2001, QSR v. 20, p. 15-24.2. Briner and Kaufman, submitted, Journal of Quaternary Science.Read this for discussion:3. letter to the editor debate on ‘Beringian Ice Sheet’ - Brigham-Grette and Gualtieri et al., 2004; Grosswald and Hughs, 2004, QR, v. 62. 

1. England, 1998, JQS, v. 13, p. 275-280.2. Miller et al., 2002, QSR, v. 21, p. 33-48.

vs.3. Briner et al., 2006, GSAB, v. 118, p. 406-420.

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Cosmogenic Exposure Dating

Page 5: Cosmogenic exposure dating -principles and applications Quaternary glacial history of Beringia -overview with case studies Late Quaternary glacial history.

3 Questions to consider:

1. How would you explain cosmogenic exposure dating to your Dad (elementary school teacher) and Mom (engineer)?

2. What are three ways that cosmogenic radionuclides are used?

3. How would you critique a dataset of cosmogenic exposure ages?

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GEOREF hits of "cosmogenic" and "glaci*"

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1930 1940 1950 1960 1970 1980 1990 2000 2010

Year

Number of records

Series1

Page 7: Cosmogenic exposure dating -principles and applications Quaternary glacial history of Beringia -overview with case studies Late Quaternary glacial history.

Surface Exposure Datingthe basics

lava flowold landscapelandslidemoraineCosmic Radiation

Page 8: Cosmogenic exposure dating -principles and applications Quaternary glacial history of Beringia -overview with case studies Late Quaternary glacial history.

Gosseand Phillips,2001

woah

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CosmoIsotopeproductionversus depth

Gosseand Phillips,2001

Page 10: Cosmogenic exposure dating -principles and applications Quaternary glacial history of Beringia -overview with case studies Late Quaternary glacial history.

The case of glacial erosion

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Page 12: Cosmogenic exposure dating -principles and applications Quaternary glacial history of Beringia -overview with case studies Late Quaternary glacial history.

Gosse and Phillips, 2001

quartz

whole rock

calcite

parent

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N =

P

λ

( 1 − e

− λ t

)

t =

ln 1 −

N λ

P

− λ

.

N=concentrationP=production rateλ=decay constantT=time

Exposure dating requires:

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Production of cosmogenic radionuclides varies spatially

Gosseand Phillips,2001

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Stone, 2000

Air Pressure

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Complication: Surface erosion

Steig et al.,1998

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Shielding of cosmic rays by surrounding topography

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Complication:Seasonal snow cover

Gosseand Phillips,2001

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Use CRONUS-Balco age calculator

http://hess.ess.washington.edu/math/

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Application #1: exposure dating

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Complication: degrading landforms

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Result of moraine degradation

Page 29: Cosmogenic exposure dating -principles and applications Quaternary glacial history of Beringia -overview with case studies Late Quaternary glacial history.
Page 30: Cosmogenic exposure dating -principles and applications Quaternary glacial history of Beringia -overview with case studies Late Quaternary glacial history.
Page 31: Cosmogenic exposure dating -principles and applications Quaternary glacial history of Beringia -overview with case studies Late Quaternary glacial history.
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Complication: isotopic inheritanceApplication #2: glacial erosion

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1.Know pre-existing cosmogenic isotope concentration2.Measure what is left3.Calculate depth of glacial erosion

Solving for glacial erosion

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Briner and Swanson, 1998, GEOLOGY

Page 36: Cosmogenic exposure dating -principles and applications Quaternary glacial history of Beringia -overview with case studies Late Quaternary glacial history.

Low elevation

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10Be = 9.4±0.4 ka

Low elevation

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Intermediate elevation

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22.0±0.7 ka

Intermediate elevation

Page 40: Cosmogenic exposure dating -principles and applications Quaternary glacial history of Beringia -overview with case studies Late Quaternary glacial history.

High elevation

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84.4±2.0 ka

High elevation

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Low-elevation bedrock(n=10)

Intermediate-elevation bedrock(n=11)

High-elevation bedrock(n=12)

Relative Probability

Page 43: Cosmogenic exposure dating -principles and applications Quaternary glacial history of Beringia -overview with case studies Late Quaternary glacial history.

High elevation

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High elevation

102.3±3.4 ka

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High elevation

11.4±0.5 ka

102.3±3.4 ka

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Erratics from intermediate and high elevation bedrock(n=27)

Low-elevation bedrock(n=10)

Intermediate-elevation bedrock(n=11)

High-elevation bedrock(n=12)

Relative Probability

Briner et al., 2006, GSAB

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Cold-based

Cold-based

warm-based

Shearzone

Shearzone

Ice Stream

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Application #3: burial studies

11.4±0.5 ka

102.3±3.4 ka

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Tor exposed at surface becomes saturated with 10Be and 26Al

10Be and 26Al accumulate in upper ~2 m of rock

Page 50: Cosmogenic exposure dating -principles and applications Quaternary glacial history of Beringia -overview with case studies Late Quaternary glacial history.

Tor shielded by cold-based ice

Once shielded:

10Be and 26Al radioactively decay differentially

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With constant exposureratio of isotope production eventually decreases

Page 52: Cosmogenic exposure dating -principles and applications Quaternary glacial history of Beringia -overview with case studies Late Quaternary glacial history.

Upon burial or shieldingratio decreases below the constant exposure line

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84.4±2.0 ka

High elevation

Al/Be burial age:~420 ka

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High elevation

102.3±3.4 ka

Al/Be burial age:~475 ka

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High elevation

11.4±0.5 ka

102.3±3.4 ka

Al/Be burial age:~475 ka

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Overview: 1. Exposure dating2. Glacial erosion3. Burial history