High-resolution ice nucleation spectra of sea-ice bacteria: Implications for cloud formation and life in frozen environments
K. Junge and B.
D. Swanson, Biogeosciences 5 865-873 (2008)
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How well does water activity determine homogenous ice nucleation temperature in aqueous sulfuric acid and ammonium sulfate droplets?
B.D. Swanson, J. Atmos. Sci. 66 741-754 (2009)
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Surface-enhanced Raman spectroscopy of soft-landed polyatomic ions and molecules
M. Volny, A. Sengupta, C.B. Wilson, B.D. Swanson, E.J. Davis and F. Turecek
Anal. Chem. 79 4543-4551 (2007)
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Experimental investigation of the
homogeneous freezing of aqueous ammonium sulfate droplets
B. H. Larson and B.
D. Swanson, J. Phys. Chem. A 110 1907-1916 (2006)
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Bacterial incorporation of leucine into protein down to –20°C with evidence for potential activity in subeutectic saline ice formations
Karen Junge, Hajo Eicken, Brian D. Swanson, Jody W.
Deming, Cryobiology 52 417-429 (2006)
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Comparison of Psychro-active Arctic Marine Bacteria and Common
Mesophyllic Bacteria Using Surface-Enhanced Raman Spectroscopy
M. L. Laucks, A. Sengupta, K. Junge, E. J. Davis, and B.
D. Swanson, Appl. Spec. 59 1222-1228 (2005)
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Comment on evidence for surface-initiated homogeneous nucleation
J.E. Kay, V. Tsemekhman, B. Larson, M. Baker
and B. Swanson, Atmos. Chem. Phys. 3 3361-66 (2003)
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Initial stages in the morphological evolution of vapor grown ice
crystals: a laboratory investigation
N.J. Bacon,
M.B. Baker and B.D. Swanson, Q. J. Roy. Meteor. Soc. 129 1903
(2003)
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Instrument for Studies of Homogeneous and Heterogeneous Ice
Nucleation in Free-falling Supercooled Water Droplets
S.E. Wood,
M.B. Baker and B.D. Swanson, Rev. Sci. Inst. 73 3988 (2002)
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Uptake of SO2 By Polycrystalline Water Ice
T. Huthwelker, D.
Lamb, M. Baker, B. Swanson and T. Peter, J. Colloid and
Interface Sci. 238 147-59 (2001)
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Non-isothermal Droplet Evaporation and Condensation in the
Near-Continuum Regime
X. Qu, E.J. Davis and B.D. Swanson,
J. Aerosol Sci. 32 1315-39 (2001)
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Laboratory Measurements of Light Scattering by Single
Levitated Ice Crystals
Neil J. Bacon and Brian D. Swanson,
J. Atmos. Sci. 57 2094-2104 (2000)
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Laboratory Measurements of Light Scattering by Single Ice
Particles
Neil J. Bacon, Brian
D. Swanson, Marcia B. Baker and E. James Davis,
J. Aerosol Sci. 29 S1317--S1318 (1998)
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Electrodynamic Trapping and Manipulation of Ice Crystals
Brian
D. Swanson, Neil Bacon, E. James Davis and Marcia B. Baker,
Q. J. Roy. Meteor. Soc. 125 1039-58 (1999)
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The Breakup of Levitated Frost Particles
Neil J. Bacon,
Brian D. Swanson, Marcia B. Baker, and E. James Davis, J.
Geophys. Res. 103 13,763-13,775 (1998)
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Trapping Two-Particle Arrays in a
Double-Ring
Electrodynamic Balance
C.L. Aardahl, R. Vehring, E.J. Davis, G.
Schweiger and B.D. Swanson, J. Aerosol Sci. 28 1491-1505 (1997)
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What Forces Bind Liquid Crystals
B. D. Swanson and L. B.
Sorensen, Phys. Rev. Lett. 75 3293 (1995).
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Surface Freezing and Surface Induced Ordering in Liquid
Crystal Films,
Brian D. Swanson, Dissertation University of
Washington (1993).
Conservation of Bond Lengths in Strained Ge-Si Layers
J.C.
Woicik, C.E. Bouldin, M.I. Bell, J.O. Cross, D.J. Tweet, B.D. Swanson,
T.M. Zhang, L.B. Sorensen, C.A. King, J.L. Hoyt, P. Pianetta, and J.F.
Gibbons, Phys. Rev. B43 2419 (1991).
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X-Ray Determination of the Molecular Tilt and Layer
Fluctuation Profiles of Freely Suspended Liquid-Crystal Films
D.
J. Tweet, R. Holyst, B. D. Swanson, H. Stragier, and L. B.
Sorensen, Phys. Rev. Lett. 65, 2157 (1990).
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Layer-by-Layer Surface Freezing of
Freely Suspended Liquid-Crystal Films
B. D. Swanson, H. Stragier,
D. J. Tweet, and L. B. Sorensen, Phys. Rev. Lett. 62, 909
(1989).
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Synchrotron Studies of the First-Order Melting
Transitions of Hexatic Monolayers and Multilayers in Freely Suspended
Liquid-Crystal Films
S. Amador, P. S. Pershan, H. Stragier, B. D.
Swanson, D. J. Tweet, L. B. Sorensen, E. B. Sirota, G. E. Ice, A.
Habenschuss, Phys. Rev. A39, 2703, (1989).
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