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Change of energy and magnetic moment of a quantum charged particle after a fast jump of the magnetic field in solenoids of arbitrary cross sections

机译:在任意横截面的磁场磁场快速跳跃后量子带电粒子的能量和磁矩的变化

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We consider a quantum charged particle moving in the xy plane under the action of a time-dependent magnetic field described by means of the most general linear vector potential of the form A = B(t) [-y(1 + alpha), x(1 - alpha)] /2. Such potentials with alpha not equal 0 can be created inside infinite solenoids with non-circular cross sections. The physical properties, such as energy and magnetic moment, do not depend on the choice of gauge in the thermodynamic equilibrium state. But systems with different values of a are not equivalent for nonstationary magnetic fields, due to different structures of induced electric fields. Using the approximation of the stepwise variation of the magnetic field, we obtain explicit formulas describing the change of the energy and magnetic moment from the initial equilibrium state, created with the aid of a weak anisotropic harmonic potential. The results are quite different for different values of the gauge parameter a, as well as for the initial high temperature and low temperature states. A strong amplification of the magnetic moment can happen even for rapidly decreasing magnetic fields. In addition, the magnetic moment becomes a strongly oscillating function of time after the jump of the field. Strong fluctuations of the magnetic moment (described in terms of the variance) are discovered in all regimes, including the initial equilibrium state. These fluctuations are sensitive to the shape of the trap confining the particle initially. Moreover, these fluctuations do not depend on the Planck constant in the high temperature case, and the magnetic moment variance is much bigger than the square of mean magnetic moment. (C) 2021 Elsevier B.V. All rights reserved.
机译:我们认为量子带电粒子在一个依赖于时间的磁场的作用下在XY平面中移动,通过A= B(t)[-y(1 +α),x(1α)] / 2的最一般的线性矢量势来描述。在具有非圆形横截面的无限螺线管内,可以产生α不等于0的电势。在热力学平衡状态下,物理性质,如能量和磁矩,不取决于量规的选择。但是,由于感应电场的结构不同,具有不同a值的系统对于非平稳磁场并不等效。利用磁场逐级变化的近似,我们得到了描述能量和磁矩从初始平衡态变化的显式公式,这是在弱各向异性谐波势的帮助下产生的。对于不同的规范参数a值,以及初始高温和低温状态,结果是完全不同的。即使在磁场迅速减小的情况下,磁矩也会发生强烈的放大。此外,磁场跳跃后,磁矩成为时间的强振荡函数。在包括初始平衡态在内的所有状态下,都发现了磁矩的强烈波动(用方差描述)。这些波动对最初限制粒子的陷阱的形状很敏感。此外,在高温情况下,这些波动与普朗克常数无关,磁矩方差远大于平均磁矩的平方。(c)2021爱思唯尔B.V.保留所有权利。

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