具有合成磁场的非线性Schrödinger方程中的调制不稳定性:规范问题

K. Lelas, O. Čelan, David Prelogovi'c, H. Buljan, D. Juki'c
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引用次数: 2

摘要

本文从理论上研究了在外加均匀合成磁场作用下服从非线性薛定谔方程的系统的调制不稳定性现象。对于初始条件,通过比较有和没有小初始扰动的动力学来检测不稳定性;这些扰动用动量空间中的波向量的标准方式来表征。我们证明了在相同的初始条件下,动量空间中的(in)稳定区域以及实空间中的时间演化取决于描述均匀合成磁场的规范(即向量势)的选择。从表面上看,这似乎打破了规范不变性,但事实并非如此。当系统在两个不同的量规中从相同的初始条件演化时,相当于在t=0时突然打开合成磁场。根据法拉第定律,这就产生了一个合成电场对波包的初始瞬时冲击,对于在t>0时产生相同均匀磁场的量规,这种冲击可能会有所不同。
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Modulation instability in the nonlinear Schrödinger equation with a synthetic magnetic field: Gauge matters
We theoretically investigate the phenomenon of modulation instability for systems obeying nonlinear Schrodinger equation, which are under the influence of an external homogeneous synthetic magnetic field. For an initial condition, the instability is detected numerically by comparing dynamics with and without a small initial perturbation; the perturbations are characterized in a standard fashion by wavevectors in momentum space. We demonstrate that the region of (in)stability in momentum space, as well as time-evolution in real space, for identical initial conditions, depend on the choice of the gauge (i.e., vector potential) used to describe the homogeneous synthetic magnetic field. This superficially appears as if the gauge invariance is broken, but this is not true. When the system is evolved from an identical initial condition in two different gauges, it is equivalent to suddenly turning on the synthetic magnetic field at $t=0$. This gives rise, via Faraday's law, to an initial instantaneous kick of a synthetic electric field to the wavepacket, which can differ for gauges yielding an identical uniform magnetic field at $t>0$.
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