Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech),...

41
Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J. Kammer (Caltech), D. Shemansky (SET)

Transcript of Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech),...

Page 1: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Organic Synthesis in the Atmosphere of Titan: Modeling

and Recent Observations

Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang

(Caltech), J. Kammer (Caltech), D. Shemansky (SET)

NAI Titan Team Meeting 11-12 May 2011, Pasadena, CA

Page 2: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Outline of Today’s Talk

Titan: gas phase chemistry

Aerosol formation

Surface chemistry

Synergism with lab data

Page 3: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Solar Scattering

Stellar Occultation

J. Ajello

Page 4: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Mixing Ratios of Selected Species from Occultations

Page 5: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

UVIS spectrum

Liang et al. 2007

tholin

CH4

Impact: 514 km

Page 6: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Optical Depth Images

Page 7: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

c

Lavvas et al. 2008

EUV

FUV

auto

Auto-catalytic process

Page 8: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Hydrocarbon Abundances from TB Encounter

Tholin scale heights above 540 km are larger than any other species indicating formation at high altitudes and downward diffusion.

Page 9: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Photochemical results

Liang, Yung, Shemansky ApJ 2007

CH4; hydrostatic

CH4; non-hydrostaticHC3N

HCN

C6N2

C6H6 C6N2; condensation line

Page 10: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Gu et al. 2009

Page 11: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Model without Haze

Page 12: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.
Page 13: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

C6Hx

Page 14: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.
Page 15: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Model with Haze Formation

Page 16: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.
Page 17: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

C6Hx

Page 18: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.
Page 19: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

[Vuitton, et al., 2006]

Page 20: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

[Vuitton, et al., 2006]

Page 21: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

[Vuitton, et al., 2006]

Ion observation

Page 22: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Outline of Today’s Talk

Titan: gas phase chemistry

Aerosol formation

Surface chemistry

Synergism with lab data

Page 23: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Solar Scattering

Stellar Occultation

J. Ajello

Page 24: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Liang et al. 2007

tholinCH4

Impact: 514 km

Stellar Occultation

Page 25: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Qe =−4xI (m2 −1m2 + 2

)

Qs =83

x4 m2 −1m2 + 2

2

x =2πrλ Single Scattering

Albedo (SSA):

SSA = Qs/Qe

Important Parameters

Goody and Yung 1989

Page 26: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Obs: 0.118

16 nm

Refractive Index from Khare and Sagan (1984)

SSA at 1875 Å

Page 27: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Shemansky et al. 2010

Page 28: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

. 2Trainer, et al 2006

Tomasko et al. 2008: ~100 km

50 nm radius 3000 monmers

Comparisons

Page 29: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

• Tholin Radius at 1040 km: 16 nm

Liang et al. (2007) “guessed” 12.5 nm from Stellar Occultation only

• Comparable to 25 nm (in radius) from Trainer et al. (2006) ; 40 nm from Bar-Nun et al. (2008)

• Lavvas et al. (2008) at 520 km (ISS):

~40 nm

Comparison of radius of tholins

Page 30: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

T Tomasko et al. 2008

Page 31: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Outline of Today’s Talk

Titan: gas phase chemistry

Aerosol formation

Surface chemistry

Synergism with lab data

Page 32: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

What happens to the Unsaturated

Hydrocarbons at the Surface?

COSMIC-RAY-MEDIATED FORMATION OF BENZENE ON THE SURFACE OF

SATURN’S MOON TITAN

Zhou et al. 2010

Page 33: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Benzene (PAH) Production on

SurfaceCosmic-ray flux on Titan’s surface (φCR =1e9 eV cm−2 s−1)

Yield of benzene from solid acetylene (from lab: Y = 5.6e-3 eV−1)Fraction of the surface of Titan covered by organics (Fo=0.2)

Fraction of organics that is acetylene (Fa=0.2)Time for turnover of the surface by geological processes (τ=2e6 yrs, lowest

estimate )

We get: M = 1.4e19 molecules cm−2

3.4 e−17 g cm−2 s−1

Page 34: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Outline of Today’s Talk

Titan: gas phase chemistry

Aerosol formation

Surface chemistry

Synergism with lab data

Page 35: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Inverse Model

Parameter Estimate

PredictionsAdjoint Forcing

Gradients(sensitivities)

Optimization

Forward Model Adjoint Model

Observations

Improved Estimate

-

t0 tf tf t0

Forward and adjoint models

<-- time evolution profiles

Page 36: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Lab: Adamkovics et al. (2003)

Liang et al. (submitted)

Page 37: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.
Page 38: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Jupiter (Moses 2005)

Page 39: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Titan (Moses 2005)

Page 40: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

References

• Yung, Y. L., M. Allen, and J. P. Pinto. (1984). "Photochemistry of the Atmosphere of Titan: Comparison between Model and Observations." Astrophysical Journal Supplement Series 55(3): 465-506.

• Goody, R. M., and Y.L. Yung, Atmospheric Radiation: Theoretical Basis, 1989, Oxford University Press.

• Yung, Y. L., and W. D. DeMore, Photochemistry of Planetary Atmospheres, 1999, Oxford University Press.

Page 41: Organic Synthesis in the Atmosphere of Titan: Modeling and Recent Observations Yuk Yung (Caltech), M. C. Liang (Academia Sinica), X. Zhang (Caltech), J.

Acknowledgements

We appreciate discussions with kinetics groups of Ralf Kaiser and Stan Sander, Mark Allen, Bob West, and support from NASA Cassini, OPR, NAI and PATM.