Effect of a critical magnetic field on the control of scalar neutral boson pair production in the context of Lorentz-symmetry violation

A. G. Jirón Vicente, A. Obispo, Daniel Espinoza Loayza, Juan Carlos Quispe Huarcaya, Luis B. Castro
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Abstract

This study investigates the production of neutral scalar boson pairs in static electromagnetic fields resulting from Lorentz-symmetry violation (LSV), with a focus on the parity-even sector of the CPT-even photon sector in the Standard Model Extension (SME). Utilizing a cross-configuration involving inhomogeneous static electric fields and homogeneous static magnetic fields, the analysis of the probability of bosons pair production identifies three different regimes determined by a critical magnetic field. Below the critical value, creation is exponentially suppressed; at the critical value, the number density of created bosons remains constant, and above the critical field, there is exponential amplification. This behavior prompts an additional investigation using von Neumann entanglement entropy to analyze fluctuations in the bosonic vacuum.
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临界磁场对违反洛伦兹对称性的标量中性玻色子成对产生的控制的影响
本研究调查了洛伦兹对称性违反(LSV)导致的静态电磁场中的中性标量玻色子对的产生,重点是标准模型扩展(SME)中的CPT-偶光子扇区的奇偶扇区。利用涉及非均质静态电场和均质静态磁场的交叉配置,对玻色子成对产生的概率进行了分析,确定了由临界磁场决定的三种不同状态。在临界值以下,玻色子的产生受到指数式抑制;在临界值处,产生的玻色子数量密度保持不变;在临界磁场以上,玻色子的产生呈指数式放大。这种行为促使我们利用冯-诺依曼纠缠熵来分析玻色真空中的波动,从而进行额外的研究。
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