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Massive particles, Kerr-Minkowski fields and singularity removal in relativistic quantum mechanics

机译:相对论量子力学中的大质量粒子,Kerr-Minkowski场和奇异性消除

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This paper concerns the spacetime locations of massive spinning particles in relativistic quantum mechanics. Using techniques from twistor theory and the unitary representations of the Lorentz group, it is shown that, for a particle of mass m, and spin j, the radial distance from the particle to the observer is bounded below by /(l + j)rn~x. If the particle is the source of a Kerr Minkowski field, the analogue of a Kerr field in general relativity, it is further shown that quantization removes the ring singularity if j is Fermionic or zero.
机译:本文涉及相对论量子力学中大质量旋转粒子的时空位置。使用扭曲理论和洛伦兹群的单位表示法的技术,表明,对于质量为m且自旋为j的粒子,从粒子到观察者的径向距离的下限为 /(l + j) rn〜x。如果粒子是Kerr Minkowski场(广义相对论中Kerr场的类似物)的源,则进一步表明,如果j为费米离子或零,则量化将消除环的奇异性。

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