Robert B. Meyer

Affiliations: 
Physics Brandeis University, Waltham, MA, United States 
Area:
liquid crystals
Website:
http://www.brandeis.edu/departments/physics/people/faculty/meyer.html
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"Robert B. Meyer"
Bio:

https://history.aip.org/phn/11606038.html
https://www.aps.org/programs/honors/prizes/prizerecipient.cfm?last_nm=Meyer&first_nm=Robert&year=2006
http://adsabs.harvard.edu/abs/1970PhDT........17M
http://www.seas.harvard.edu/matsci/people/alumni/alumni.html

Mean distance: 12.9
 
SNBCP

Parents

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David Turnbull grad student 1970 Harvard
 (Effects of Magnetic and Electric Fields on the Structure of Liquid Crystals)

Children

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Stephen Garoff grad student 1977 Harvard
Seth Fraden grad student 1987 Brandeis
Jong-Bong Lee grad student 2004 Brandeis
Guangnan Meng grad student 2004 Brandeis
Cihan N. Kaplan grad student 2012 Brandeis
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Publications

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Gibaud T, Kaplan CN, Sharma P, et al. (2017) Achiral symmetry breaking and positive Gaussian modulus lead to scalloped colloidal membranes. Proceedings of the National Academy of Sciences of the United States of America
Kaplan CN, Meyer RB. (2014) Colloidal membranes of hard rods: unified theory of free edge structure and twist walls. Soft Matter. 10: 4700-10
Zakhary MJ, Gibaud T, Kaplan CN, et al. (2014) Imprintable membranes from incomplete chiral coalescence. Nature Communications. 5: 3063
Kaplan CN, Gibaud T, Meyer RB. (2013) Intrinsic curvature determines the crinkled edges of "crenellated disks" Soft Matter. 9: 8210-8215
Gibaud T, Barry E, Zakhary MJ, et al. (2012) Reconfigurable self-assembly through chiral control of interfacial tension. Nature. 481: 348-51
Yang Y, Meyer RB, Hagan MF. (2010) Self-limited self-assembly of chiral filaments. Physical Review Letters. 104: 258102
Kaplan CN, Tu H, Pelcovits RA, et al. (2010) Theory of depletion-induced phase transition from chiral smectic- A twisted ribbons to semi-infinite flat membranes. Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics. 82: 021701
Barry E, Dogic Z, Meyer RB, et al. (2009) Direct measurement of the twist penetration length in a single smectic A layer of colloidal virus particles. The Journal of Physical Chemistry. B. 113: 3910-3
Pelcovits RA, Meyer RB. (2009) Twist penetration in single-layer smectic A discs of colloidal virus particles Liquid Crystals. 36: 1157-1160
Parry-Jones LA, Meyer RB, Elston SJ. (2009) Mechanisms of flexoelectric switching in a zenithally bistable nematic device Journal of Applied Physics. 106
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