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On the spontaneous emission of electromagnetic radiation in the CSL model

机译:关于CSL模型中电磁辐射的自发辐射

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摘要

Spontaneous photon emission in the Continuous Spontaneous Localization (CSL) model is studied one more time. In the CSL model each particle interacts with a noise field that induces the collapse of its wave function. As a consequence of this interaction, when the particle is electrically charged, it radiates. As discussed in Adler (2013) the formula for the emission rate, to first perturbative order, contains two terms: one is proportional to the Fourier component of the noise field at the same frequency as that of the emitted photon and one is proportional to the zero Fourier component of the noise field. As discussed in previous works, this second term seems unphysical. In Adler (2013) it was shown that the unphysical term disappears when the noise is confined to a bounded region and the final particle's state is a wave packet. Here we investigate the origin of this unphysical term and why it vanishes according to the previous prescription. We will see that perturbation theory is formally not valid in the large time limit since the effect of the noise accumulates continuously in time. Therefore either one performs an exact calculation (or at least in some way includes higher order terms) as we do here, or one finds a way to make a perturbative calculation meaningful, e.g., by confining the system as in Adler (2013).
机译:在连续自发局域化(CSL)模型中,自发光子发射又进行了一次研究。在CSL模型中,每个粒子与一个噪声场相互作用,该噪声场导致其波函数崩溃。这种相互作用的结果是,当粒子带电时,它会辐射。正如Adler(2013)所讨论的那样,发射率的公式(按一阶扰动)包含两个术语:一个与噪声场的傅立叶分量成正比,且与发射光子的频率相同,另一个与噪声场的傅立叶成正比。噪声场的零傅立叶分量。如先前作品中所讨论的,第二个术语似乎是不自然的。在阿德勒(Adler,2013)中,研究表明,当噪声被限制在边界区域且最终粒子的状态为波包时,非物理术语消失了。在这里,我们研究了这个非自然术语的起源以及为什么它会根据先前的处方消失。我们将看到,扰动理论在较大的时限内正式无效,因为噪声的影响会随着时间不断累积。因此,要么像我们在这里那样进行精确的计算(或者至少以某种方式包括高阶项),要么找到一种使扰动计算有意义的方法,例如像Adler(2013)那样限制系统。

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