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A comprehensive theoretical description is given for the spin relaxation and diffusion in solids. The formulation is made in a general statistical-mechanical way. The method of the nonequilibrium statistical operator (NSO) developed by Zubarev is employed to analyze a relaxation dynamics of a...
Fluid turbulence is a paradigm for non-linear systems with many degrees of freedom and important in numerous applications. Because the analytical understanding of the equations of motion is poor, experiments and, lately, direct numerical simulations of the equations of motion, have been...
We discuss a computational mechanism for the generation of a stationary dark soliton, or black soliton, in a trapped Bose–Einstein condensate (BEC) using the Gross–Pitaevskii (GP) equation for both attractive and repulsive interaction. It is demonstrated that the black soliton with a “notch" in...
The ground state properties of helium mixed clusters 3He2,3,4
4He5, consisting of up to eight helium atoms are studied using variational and diffusion Monte Carlo calculations. For clusters with three and four 3He atoms released-node diffusion Monte...
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