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Aharonov-Bohm scattering of charged particles and neutral atoms: the role of absorption

机译:带电粒子和中性原子的Aharonov-Bohm散射:吸收的作用

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摘要

The Aharonov-Bohm scattering of charged particles by the magnetic field of an infinitely long and infinitely thin solenoid (magnetic string) in an absorbing medium is studied. We discuss the partial-wave approach to this problem and show that standard partial-wave method can be adjusted to this case. The effect of absorption leads to oscillations of the AB cross section. Based on this we investigate the scattering of neutral atoms with induced electric dipole moments by a charge wire of finite radius which is placed in an uniform magnetic field. The physical realistic and practically important case that all atoms which collide with the wire are totally absorbed at its surface, is studied in detail. The dominating terms of the scattering amplitude are evaluated analytically for different physical constellations. The rest terms are written in a form suitable for a numerical computation. We show that if the magnetic field is absent, the absorbing charged wire causes oscillations of the cross section. In the presence of the magnetic field the cross section increases and the dominating Aharonov--Bohm peak appears in the forward direction, suppressing the oscillations.
机译:研究了吸收介质中无限长且无限细的螺线管(电磁线)的磁场对带电粒子的Aharonov-Bohm散射。我们讨论了针对该问题的分波方法,并表明可以针对这种情况调整标准分波方法。吸收作用导致AB截面振荡。在此基础上,我们通过放置在均匀磁场中的有限半径的充电线研究具有感应电偶极矩的中性原子的散射。详细研究了与导线碰撞的所有原子在其表面完全被吸收的物理现实情况,在实践中很重要。对于不同的物理星座,通过分析评估散射幅度的主要项。其余术语以适合于数值计算的形式编写。我们表明,如果没有磁场,则带电的吸收性导线会引起截面振荡。在存在磁场的情况下,横截面增大,并且主导的Aharonov-Bohm峰沿正向出现,从而抑制了振荡。

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