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首页> 外文期刊>Radiophysics and quantum electronics >Bremsstrahlung at Low-Energy Electron-Nucleus Collisions in the Quantizing Magnetic Field. I. Distant Collisions
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Bremsstrahlung at Low-Energy Electron-Nucleus Collisions in the Quantizing Magnetic Field. I. Distant Collisions

机译:在量化磁场中的低能量电子 - 核碰撞下Bremsstrahlung。 I.遥远的碰撞

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We analytically calculate the spectral power of bremsstrahlung from a slow electron colliding with motionless nuclei in a strong quantizing magnetic field, in which the energy of the Coulomb interaction between particles at a distance of the order of the Larmor radius exceeds the mechanical energy of the system in absolute value. In this case, the electron motion becomes quasibound in sufficiently close collisions. In this part of research, we consider bremsstrahlung at low frequencies, which is stipulated by distant flybys without quasibound motion: an electron can spread over many Landau levels as a result of the collision, but keeps the direction of its motion along the magnetic field. We prove that the transition from the classical to quantum cyclotron gyration of an electron does not manifest itself in the spectral emission power of the waves with arbitrary polarization at the considered frequencies. This property stems from the fact that the low-frequency emission is due to the longitudinal motion and electric drift in the crossed Coulomb and magnetic fields which remain quasiclassical. Thus, we confirm that the bleaching of the photosphere of a magnetic white dwarf, which was discovered in the classical consideration with respect to collisional absorption of the extraordinary wave (polarized across the external magnetic field), is also preserved in the quantum limitfor stars of this spectral type with the strongest magnetic field.
机译:我们在强量化磁场中分析了从慢速电子碰撞的缓慢电子碰撞的Bremsstrahlung的光谱功率,其中颗粒之间的颗粒之间的库仑相互作用的能量超出了系统的机械能的距离超过了系统的机械能绝对值。在这种情况下,电子运动变得足够紧密的碰撞。在这部分研究中,我们考虑了低频的Bremsstrahlung,其由遥远的蝇雪规定而没有Quasibound Motion:由于碰撞的结果,电子可以在许多Landau水平上传播,但是保持其沿磁场的运动方向。我们证明,从经典转换到电子的Quantum回旋陀螺的转变在所考虑的频率下具有任意极化的波的光谱发射功率不明显。该属性源于低频发射是由于横向库仑和磁场中的纵向运动和电磁场的电漂移。因此,我们确认在经典考虑中发现的磁性白矮星的漂白,这在古典考虑到非凡波的碰撞(偏离外部磁场),也保留在恒星中的量子限制中这种光谱型,具有最强的磁场。

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