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Seiberg-Witten map and quantum phase effects for neutral Dirac particle on noncommutative plane

机译:非交换平面上中性狄拉克粒子的Seiberg-Witten映射和量子相位效应

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We provide a new approach to study the noncommutative effects on the neutral Dirac particle with anomalous magnetic or electric dipole moment on the noncommutative plane. The advantages of this approach are demonstrated by investigating the noncommutative corrections on the Aharonov-Casher and He-McKellar-Wilkens effects. This approach is based on the effective U(1) gauge symmetry for the electrodynamics of spin on the two dimensional space. The Seiberg-Witten map for this symmetry is then employed when we study the noncommutative corrections. Because the Seiberg-Witten map preserves the gauge symmetry, the noncommutative corrections can be defined consistently with the ordinary phases. Based on this approach we find the noncommutative corrections on the Aharonov-Casher and He-McKellar-Wilkens phases consist of two terms. The first one depends on the beam particle velocity and consistence with the previous results. However the second term is velocity-independent and then completely new. Therefore our results indicate it is possible to investigate the noncommutative space by using ultra-cold neutron interferometer in which the velocity-dependent term is negligible. Furthermore, both these two terms are proportional to the ratio between the noncommutative parameter theta and the cross section Ae/m of the electrical/magnetic charged line enclosed by the trajectory of beam particles. Therefore the experimental sensitivity can be significantly enhanced by reducing the cross section of the charge line A(e/m). (C) 2016 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY license.
机译:我们提供了一种新的方法来研究非交换平面上具有异常磁或电偶极矩的中性Dirac粒子的非交换效应。通过研究Aharonov-Casher和He-McKellar-Wilkens效应的非交换校正,可以证明这种方法的优势。此方法基于有效的U(1)规范对称性,用于二维空间中自旋的电动力学。然后,当我们研究非对易校正时,就采用了这种对称性的Seiberg-Witten映射。由于Seiberg-Witten映射保留了量规对称性,因此非换向校正可以与普通相位一致地定义。基于这种方法,我们发现Aharonov-Casher和He-McKellar-Wilkens相的非对易校正包括两个项。第一个取决于束粒子的速度以及与先前结果的一致性。但是第二项是速度无关的,然后是全新的。因此,我们的结果表明,可以使用速度依赖项可以忽略的超冷中子干涉仪研究非交换空间。此外,这两项均与非交换参数θ和由束粒子的轨迹所包围的电/磁带电线的横截面Ae / m之间的比率成比例。因此,通过减小充电线A(e / m)的横截面可以显着提高实验灵敏度。 (C)2016作者。由Elsevier B.V.发布。这是CC BY许可下的开放获取文章。

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