论文标题
电磁场的量子状态与经典电流相互作用及其在辐射问题上的应用
Quantum states of electromagnetic field interacting with a classical current and their applications to radiation problems
论文作者
论文摘要
一开始,使用电流的Liénard-Wiechert电势通过经典方法研究了同步加速器辐射(SR)。随后,考虑了根据频谱之间的电子过渡产生的光子的发射,研究了对所获得的经典公式的量子校正,这是用狄拉克方程描述的。在本文中,我们考虑了一种中间方法,其中经典考虑了产生辐射的电流,而准确地考虑了辐射的量子性质。在某些情况下,这种近似方法可能会有所帮助,它允许人们研究单光子和多光子辐射,而不会使用dirac方程的相应溶液使计算变得复杂。我们构建了与经典电流相互作用的电磁场的精确量子状态并研究其特性。在他们的帮助下,我们计算出经典电流的光子发射概率,并为单光子和多光子辐射获得相对简单的公式。使用特定的圆形电流,我们计算相应的SR。我们讨论了以前已知获得的结果的关系,例如,Schott公式以及Schwinger的计算,以及由于Landau水平之间的过渡而与标量颗粒的一光辐射以及计算两光子SR的一些先前结果。
In the beginning, the synchrotron radiation (SR) was studied by classical methods using the Liénard-Wiechert potentials of electric currents. Subsequently, quantum corrections to the obtained classical formulas were studied, considering the emission of photons arising from electronic transitions between spectral levels, described in terms of the Dirac equation. In this paper, we consider an intermediate approach, in which electric currents generating the radiation are considered classically, whereas the quantum nature of the radiation is taken into account exactly. Such an approximate approach may be helpful in some cases, it allows one to study the one-photon and multi-photon radiation without complicating calculations using corresponding solutions of the Dirac equation. We construct exact quantum states of the electromagnetic field interacting with classical currents and study their properties. By their help, we calculate a probability of photon emission by classical currents and obtain relatively simple formulas for the one-photon and multi-photon radiation. Using the specific circular electric current, we calculate the corresponding SR. We discuss a relation of obtained results with known before, for example, with the Schott formula, with the Schwinger calculations, with one-photon radiation of scalar particles due to transitions between Landau levels, and with some previous results of calculating the two-photon SR.