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Beta decay and other processes in strong electromagnetic fields

机译:Beta衰减和强电磁场中的其他过程

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We consider effects of the fields of strong electromagnetic waves on various characteristics of quantum processes. After a qualitative discussion of the effects of external fields on the energy spectra and angular distributions of the final-state particles as well as on the total probabilities of the processes (such as decay rates and total cross sections), we present a simple method of calculating the total probabilities of processes with production of nonrelativistic charged particles. Using nuclear β decay as an example, we study the weak- and strong-field limits, as well as the field-induced β decay of nuclei stable in the absence of the external fields, both in the tunneling and multiphoton regimes. We also consider the possibility of accelerating forbidden nuclear β decays by lifting the forbiddeness due to the interaction of the parent or daughter nuclei with the field of a strong electromagnetic wave. It is shown that for currently attainable electromagnetic fields all effects on total β-decay rates are unobservably small.
机译:我们考虑强电磁波场对量子过程各种特征的影响。在定性讨论了外场对最终态粒子的能谱和角分布以及过程的总概率(例如衰减率和总截面)的影响之后,我们提出了一种简单的方法计算产生非相对论性带电粒子的过程的总概率。以核β衰变为例,我们研究了弱电场和强电场极限,以及在隧穿和多光子状态下,在没有外部场的情况下稳定产生的核的β衰变。我们还考虑了通过消除由于父核或子核与强电磁波场相互作用而产生的禁忌来加速禁忌核β衰变的可能性。结果表明,对于当前可获得的电磁场,所有对总β衰变率的影响都很小。

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