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Subvacuum effects of the quantum field on the dynamics of a test particle

机译:量子场的真空对测试粒子动力学的影响

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摘要

We study the effects of the electromagnetic subvacuum fluctuations on the dynamics of a nonrelativistic charged particle in a wavepacket. The influence from the quantum field is expected to give an additional effect to the velocity uncertainty of the particle. In the case of a static wavepacket, the observed velocity dispersion is smaller in the electromagnetic squeezed vacuum background than in the normal vacuum background. This leads to the subvacuum effect. The extent of reduction in velocity dispersion associated with this subvacuum effect is further studied by introducing a switching function. It is shown that the slow switching process may make this subvacuum effect insignificant. We also point out that when the center of the wavepacket undergoes non-inertial motion, reduction in the velocity dispersion becomes less effective with its evolution, no matter how we manipulate the nonstationary quantum noise via the choice of the squeeze parameters. The role of the underlying fluctuation-dissipation relation is discussed.
机译:我们研究了电磁子真空波动对波包中非相对论带电粒子动力学的影响。预期来自量子场的影响将对粒子的速度不确定性产生附加影响。在静态波包的情况下,在电磁挤压真空背景下观察到的速度色散小于正常真空背景下观察到的速度色散。这导致真空不足的效果。通过引入开关函数,可以进一步研究与此次真空效应相关的速度色散减小的程度。结果表明,缓慢的开关过程可能使该次真空效应变得微不足道。我们还指出,当波包的中心经历非惯性运动时,无论我们如何通过选择挤压参数来操纵非平稳量子噪声,减小速度色散随着其演化而变得不太有效。讨论了基础涨落-耗散关系的作用。

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