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Condensed matter physics / Solitons / Optics / Bose–Einstein condensate / Quantum vortex / Optical vortex / Knot theory / Vortex / Nonlinear optics / Physics / Matter / Fluid dynamics


Spontaneous knotting of self-trapped waves SUBJECT AREAS: NONLINEAR OPTICS PHYSICS OPTICAL PHYSICS
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Document Date: 2012-10-26 01:55:56


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City

Manton / Bristol / Pisa / /

Company

H. Wills Physics Laboratory / Cambridge University Press / Creative Commons / Thomson / Vysotina N. V. / Desyatnikov A. S. / /

Country

United States / Italy / Australia / United Kingdom / /

Currency

pence / /

/

Facility

Kavli Institute / University of California / The Australian National University / University of Bristol / A. J. Stable / /

IndustryTerm

stationary solution / energy flow / generic excitable media / null-solutions / energy minimizers / self-focusing media / chemical and biological reaction-diffusion systems15 / numerical algorithms / fundamental solution / linear media / photorefractive media / physical systems / nonlinear media / stable soliton solutions / optical media / energy / /

Movie

A.D. / /

Organization

Cambridge University / Scuola Normale Superiore / National Science Foundation / University of Bristol / Cornell / University of California / Santa Barbara / Research School of Physics and Engineering / University of California in Santa Barbara / Kavli Institute for Theoretical Physics / Australian Research Council / Australian National University / Nonlinear Physics Centre / /

Person

Chen / Alexander / Nat / Kelvin / /

Position

Author / director field / King / G. P. / /

ProvinceOrState

Nova Scotia / California / /

PublishedMedium

Nature Physics / /

Technology

laser / THERMODYNAMICS / simulation / /

URL

www.nature.com/scientificreports / http /

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