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首页> 外文期刊>Journal of Low Temperature Physics >Extended Fluid-Dynamics and Collective Motion of Two Trapped Fermion Species with Pairing Interactions
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Extended Fluid-Dynamics and Collective Motion of Two Trapped Fermion Species with Pairing Interactions

机译:具有配对相互作用的两个被困费米子物种的扩展流体动力学和集体运动

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摘要

We extend our earlier fluid-dynamical description of fermion superfluids incorporating the particle energy flow together with the equation of motion for the internal kinetic energy of the pairs. The formal scheme combines a set of equations similar to those of classical hydrodynamics with the equations of motion for the anomalous density and for its related momentum density and kinetic energy density. This dynamical frame represents a second order truncation of an infinite hierarchy of equations of motion isomorphic to the full time dependent Hartree-Fock-Bogoliubov equations in coordinate representation. We analyze the equilibrium solutions and fluctuations for a homogeneous, unpolarized fermion system of two species, and show that the collective spectrum presents the well-known Anderson-Bogoliubov low energy mode of homogeneous superfluids and a pairing vibration near the gap energy.
机译:我们扩展了我们先前对费米子超流体的流体动力学描述,该描述结合了粒子能量流以及两对内动能的运动方程。形式方案将一组类似于经典流体力学的方程组与反常密度及其相关动量密度和动能密度的运动方程组结合起来。该动力学框架表示同构的全时依赖Hartree-Fock-Bogoliubov方程的同构运动方程的无限层次的二阶截断。我们分析了两个物种的同质,非极化费米子系统的平衡解和涨落,并表明集体光谱呈现了众所周知的安德森-博格利乌波夫低能模式的均质超流体和配对能级在间隙能附近的振动。

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