Results 11 to 20 of about 5,364 (225)
Bose–Einstein condensation in the Rindler space
Based on the Unruh effect, we calculate the critical acceleration of the Bose–Einstein condensation in a free complex scalar field at finite density in the Rindler space.
Shingo Takeuchi
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Functional theory for Bose-Einstein condensates
One-particle reduced density matrix functional theory would potentially be the ideal approach for describing Bose-Einstein condensates. It namely replaces the macroscopically complex wave function by the simple one-particle reduced density matrix, and ...
Julia Liebert, Christian Schilling
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Bose-Einstein Condensate Comagnetometer [PDF]
We describe a comagnetometer employing the $f=1$ and $f=2$ ground state hyperfine manifolds of a $^{87}$Rb spinor Bose-Einstein condensate as co-located magnetometers. The hyperfine manifolds feature nearly opposite gyromagnetic ratios and thus the sum of their precession angles is only weakly coupled to external magnetic fields, while being highly ...
Gomez, Pau +5 more
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Bose-Einstein Condensates in Superlattices [PDF]
30 pages, 5 color figures (some with multiple parts), to appear in SIAM Journal on Applied Dynamical Systems; expanded work on spatially extended solutions; added introductory material and discussions of relevant experimental work; section on localized solutions moved to another ...
Porter, Mason A, Kevrekidis, PG
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Bose-Einstein Condensation of Chromium [PDF]
4 pages, 4 ...
Griesmaier, Axel +4 more
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Calorimetry of Bose–Einstein condensates [PDF]
6 pages, 1 figure.
Blakie, P. B., Toth, E., Davis, M. J.
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Bose-Einstein condensation at reheating [PDF]
4 pages, 4 figures.
MANGANO G. +3 more
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Polymer Bose–Einstein condensates [PDF]
In this work we analyze a non--interacting one dimensional polymer Bose--Einstein condensate in an harmonic trap within the semiclassical approximation. We use an effective Hamiltonian coming from the polymer quantization that arises in loop quantum gravity. We calculate the number of particles in order to obtain the critical temperature.
Castellanos, E., Chacón-Acosta, G.
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Bose-Einstein Condensation of Europium
We report the realization of a Bose-Einstein condensate of europium atoms, which is a strongly dipolar species with unique properties, a highly symmetric $[\mathrm{Xe}]\ 4f^7 6s^2\ {}^8\mathrm{S}_{7/2}$ electronic ground state and a hyperfine structure.
Yuki Miyazawa +4 more
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Kinetics of Strongly Nonequilibrium Magnon Gas Leading to Bose-Einstein Condensation [PDF]
Kinetic equations describing nonequilibrium magnon gas under the action of parametric pumping are considered with an account of kinetic instability processes. These processes strongly influence condition of magnon Bose-Einstein condensate formation.
D.V. Slobodianiuk, O.V. Prokopenko
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