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In my lab we use light scattering, optical microscopy, spectroscopy, synthesis and other experimental techniques to understand the physics of self-organization. For most of these experiments we use colloids, suspensions of particles typically about a micrometer in size. Because these particles are small enough to be buffeted about by Brownian motion, yet large enough that their motion is directly visible, they are extremely useful: they can be used as tracers to probe the internal dynamics of networks and fluids, as "handles" that can be attached to proteins and DNA so that these molecules can be manipulated with optical tweezers, and as generic model systems for understanding how random motion transforms disorder to order.
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论文共 263 篇作者统计合作学者相似作者
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NANOSCALEno. 6 (2024): 3121-3132
Soft matter (2024)
Anna B. Stephenson,Ming Xiao,Victoria Hwang,Liangliang Qu, Paul A. Odorisio, Michael Burke, Keith Task, Ted Deisenroth,Solomon Barkley,Rupa H. Darji,Vinothan N. Manoharan
arxiv(2023)
Timothy K. Chiang,Ofer Kimchi, Herman K. Dhaliwal, Daniel A. Villarreal, Fernando F. Vasquez,Vinothan N. Manoharan,Michael P. Brenner,Rees F. Garmann
biorxiv(2023)
Applied opticsno. 27 (2023): 7205-7215
PHYSICAL REVIEW Eno. 5 (2023): 054608-054608
Rees F Garmann,Aaron M Goldfain,Cheylene R Tanimoto,Christian E Beren, Fernando F Vasquez, Daniel A Villarreal,Charles M Knobler,William M Gelbart,Vinothan N Manoharan
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