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首页> 外文期刊>European Physical Journal Plus >Fermions in a mixed vector-scalar double-step potential via continuous chiral transformation
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Fermions in a mixed vector-scalar double-step potential via continuous chiral transformation

机译:通过连续手性变换在混合矢量-标量双步势中的费米子

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摘要

The behaviour of fermions in the background of a double-step potential is analyzed with a general mixing of scalar and vector couplings via continuous chiral-conjugation transformation. Provided the vector coupling does not exceed the scalar coupling, a Sturm-Liouville approach for the double-step potential shows that the transmission coefficient exhibits oscillations and that a finite set of intrinsically relativistic bound-state solutions might appear as poles of the transmission amplitude in a strong coupling regime. An isolated bound-state solution resulting from coupled first-order equations might also come into sight. It is also shown that all those possible bound solutions disappear asymptotically as one approaches the conditions for the realization of the so-called spin and pseudospin symmetries in a four-dimensional space-time. Furthermore, we show that due to the additional mass acquired by the fermion from the scalar background the high localization of the fermion in an extreme relativistic regime does not violate the Heisenberg uncertainty principle.
机译:通过连续的手性-共轭变换,通过标量和矢量耦合的一般混合,分析了双步电势背景下费米子的行为。假设矢量耦合不超过标量耦合,则针对双步电势的Sturm-Liouville方法表明,传输系数表现出振荡,并且有限的一组固有的相对论结合态解可能会出现为传输振幅的极点。强大的耦合机制。由耦合的一阶方程产生的孤立的束缚态解也可能出现。还表明,所有这些可能的束缚解随着一个在四维时空中实现所谓的自旋和伪自旋对称性的条件而渐近消失。此外,我们表明,由于费米子从标量背景中获得了额外的质量,因此费米子在极端相对论体系中的高度局部化没有违反海森堡不确定性原理。

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