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Quantum theory of curvature and synchro-curvature radiation in a strong and curved magnetic field, and applications to neutron star magnetospheres

机译:曲率和弯曲磁场中的曲率和同步曲率辐射的量子理论,以及中子星磁光学的应用

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摘要

In a previous paper, we derived the quantum states of a Dirac particle in a circular, intense magnetic field in the limit of low momentum perpendicular to the field with the purpose of giving a quantum description of the trajectory of an electron, or a positron, in a typical pulsar or magnetar magnetosphere. Here we continue this work by computing the radiation resulting from transitions between these states. This leads us to derive from first principles a quantum theory of the so-called curvature and synchro-curvature radiations relevant for rotating neutron star magnetospheres. We find that, within the approximation of an infinitely confined wave function around the magnetic field and in the continuous energy-level limit, classical curvature radiation can be recovered in a fully consistent way. Further we introduce discrete transitions to account for the change of momentum perpendicular to the field and derive expressions for what we call quantum synchro-curvature radiation. Additionally, we express deconfinement and quantum recoil corrections.
机译:在先前的论文中,我们在垂直于该领域的低动量的极限中衍生圆形强度磁场的量子状态,其目的是给出电子的轨迹或正电子的轨迹的量子描述在典型的脉冲柱或磁铁磁层中。在这里,我们通过计算这些状态之间的过渡产生的辐射来继续这项工作。这导致我们从第一个原理获得了对旋转中子星磁光学相关的所谓曲率和同步曲率辐射的量子理论。我们发现,在磁场周围的无限狭窄波功能的近似值内,在连续的能级极限中,可以以完全一致的方式回收经典的曲率辐射。此外,我们介绍了离散的转变,以解释垂直于该领域的动量和推导表达式的表达式,了解Quantum同步曲率辐射的表达。此外,我们表达了解构和量子重新调校。

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  • 来源
    《Physical Review D》 |2017年第12期|105008.1-105008.17|共17页
  • 作者单位

    LUTh Observatoire de Paris PSL Research University 5 Place Jules Janssen 92190 Meudon France;

    LUTh Observatoire de Paris PSL Research University 5 Place Jules Janssen 92190 Meudon France;

    LUTh Observatoire de Paris PSL Research University-CNRS 5 Place Jules Janssen 92190 Meudon France;

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