Simulation of stochastic vortex tangle

被引:0
|
作者
Kondaurova, L.P. [1 ]
Nemirovskii, S.K. [1 ]
Nedoboiko, M.V. [1 ]
机构
[1] Kutateladze Inst. of Thermophysics, SB RAS, Novosibirsk 630090, Russia
来源
| 2003年 / Institute for Low Temperature Physics and Engineering卷 / 29期
关键词
Algorithms - Computer simulation - Differential equations - Quantum theory - Random processes - Vortex flow;
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摘要
We present the results of simulation of the chaotic dynamics of quantized vortices in the bulk of superfluid He II. Evolution of vortex lines is calculated on the base of the Biot - Savart law. The dissipative effects appeared from the interaction with the normal component, or/and from relaxation of the order parameter are taken into account. Chaotic dynamics appears in the system via a random forcing, e.i. we use the Langevin approach to the problem. In the present paper we require the correlator of the random force to satisfy the fluctuation-dissipation relation, which implies that thermodynamic equilibrium should be reached. In the paper we describe the numerical methods for integration of stochastic differential equation (including a new algorithm for reconnection processes), and we present the results of calculation of some characteristics of a vortex tangle such as the total length, distribution of loops in the space of their length, and the energy spectrum.
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