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首页> 外文期刊>Theoretical and mathematical physics >SPONTANEOUS FERMION CREATION IN THE COULOMB FIELD AND AHARONOV–BOHM POTENTIAL IN 2+1 DIMENSIONS
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SPONTANEOUS FERMION CREATION IN THE COULOMB FIELD AND AHARONOV–BOHM POTENTIAL IN 2+1 DIMENSIONS

机译:库仑场中自发的费伦子创造和2 + 1维的AHARONOV-BOHM势

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摘要

We find exact solutions of the Dirac equation and the fermion energy spectrum in the Coulomb (vector and scalar) potential and Aharonov–Bohm potential in 2+1 dimensions taking the particle spin into account. We describe the fermion spin using the two-component Dirac equation with the additional (spin) parameter introduced by Hagen. We consider the effect of creation of fermion pairs from the vacuum by a strong Coulomb field in the Aharonov–Bohm potential in 2+1 dimensions. We obtain transcendental equations implicitly determining the electron energy spectrum near the boundary of the lower energy continuum and the critical charge. We numerically solve the equation for the critical charge. We show that for relatively weak magnetic flows, the critical charge decreases (compared with the case with no magnetic field) if the energy of interaction of the electron spin magnetic moment with the magnetic field is negative and increases if this energy is positive.
机译:我们在考虑粒子自旋的情况下,找到了Dirac方程的精确解以及库仑(矢量和标量)电势和Aharonov-Bohm电势在2 + 1维中的费米能谱。我们使用两成分Dirac方程和哈根(Hagen)引入的附加(自旋)参数描述费米子自旋。我们考虑了在2 + 1维的Aharonov–Bohm势中由强库仑场从真空中产生费米对的影响。我们获得了超越方程,隐含地确定了较低能量连续体和临界电荷边界附近的电子能谱。我们用数值方法求解临界电荷方程。我们表明,对于相对弱的磁流,如果电子自旋磁矩与磁场相互作用的能量为负,则临界电荷减小(与没有磁场的情况相比),而如果该能量为正,则临界电荷增加。

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