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首页> 外文期刊>Physics - Uspekhi >Laser radiation enhancement of forbidden orbital electron captures and of neutrinoless double electron captures by nuclei
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Laser radiation enhancement of forbidden orbital electron captures and of neutrinoless double electron captures by nuclei

机译:激光辐照增强了原子核对禁止轨道电子的捕获和对中微子双电子的捕获

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摘要

A study was conducted to demonstrate the way laser radiation enhanced forbidden orbital electron captures neutrinoless double electron captures by nuclei. The possibility of the experimental observation of acceleration of the second-order forbidden capture in the laser field, was more clear where the effective charge was lower and polarizability higher. Some physical considerations regarding the possibility of achieving acceleration of significant neutrinoless double capture of orbital electrons by stable nuclei through the application of a strong electric field to the atoms were demonstrated. It was observed that such a process was realized if a neutrino coincided with its antiparticle. The amplitude of this function at the nucleus increased when the wave function of the captured electron with the nonzero orbital quantum number was shifted by an electric field with respect to the nucleus, leading to the acceleration of the double electron capture.
机译:进行了一项研究,以证明激光辐射增强了禁止的轨道电子捕获核的无中微子双电子捕获的方式。在有效电荷较低而极化率较高的地方,实验观察到加速二级禁止捕获在激光场中的可能性更加清楚。通过对原子施加强电场,证明了有关通过稳定核实现加速显着无中子双捕获轨道电子的可能性的一些物理考虑。观察到,如果中微子与其反粒子一致,则可以实现这种过程。当具有非零轨道量子数的被捕获电子的波函数相对于原子核被电场移位时,该函数在核上的振幅增加,从而导致双电子捕获的加速。

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