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首页> 外文期刊>The European Physical Journal, A. Hadrons and Nuclei >Magnetic dipole moment in relativistic quantum mechanics
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Magnetic dipole moment in relativistic quantum mechanics

机译:相对论量子力学中的磁性偶极矩

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摘要

We investigate relativistic quantum mechanics (RQM) for particles with arbitrary magnetic moment. We compare two well known RQM models: a) Dirac equation supplemented with an incremental Pauli term (DP); b) Klein-Gordon equations with full Pauli EM dipole moment term (KGP). We compare exact solutions to the external field cases in the limit of weak and strong (critical) fields for: i) homogeneous magnetic field, and ii) the Coulomb 1/r-potential. For i) we consider the Landau energies and the Landau states as a function of the gyromagnetic factor (g-factor). For ii) we investigate contribution to the Lamb shift and the fine structure splitting. For both we address the limit of strong binding and show that these two formulations grossly disagree. We discuss possible experiments capable of distinguishing between KGP and DP models in laboratory. We describe the impact of our considerations in the astrophysical context (magnetars). We introduce novel RQM models of magnetic moments which can be further explored.
机译:我们研究了具有任意磁矩的颗粒的相对论量子力学(RQM)。我们比较两个众所周知的RQM模型:a)DIDAC方程补充有增量Pauli项(DP); b)具有全保利em偶极矩项(KGP)的Klein-Gordon方程。我们将外部现场案例的精确解决方案与:i)均匀磁场的极限和强(临界)磁场的极限进行比较,II)Coulomb 1 / R电位。对于i)我们认为Landau Energies和Landau状态是旋转磁因子(G型)的函数。对于II)我们调查对羔羊换档的贡献和细结构分裂。对于我们都解决了强大的绑定的极限,并表明这两种配方非常不同意。我们讨论了能够区分实验室中KGP和DP模型的可能实验。我们描述了我们对天体物理背景(磁石)中的考虑因素的影响。我们介绍了可以进一步探索的磁矩的新型RQM模型。

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