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Influence of Lorentz Invariation Violation on Arbitrary Spin Fermion Tunneling Radiation in the Vaidya-Bonner Space-Time

机译:Lorentz Innired违规对Vaidya-Bonner时空任意自旋铁饼隧道辐射的影响

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In the space-time of the nonstationary spherical symmetry Vaidya-Bonner black hole, an accurate modification of Hawking tunneling radiation for fermions with arbitrary spin is researched. Considering a light dispersion relationship derived from string theory, quantum gravitational theory, and the Rarita-Schwinger equation in the nonstationary spherical symmetry space-time, we derive an accurately modified dynamic equation for fermions with arbitrary spin. By solving the equation, the modified tunneling rate of fermions with arbitrary spin, Hawking temperature, and entropy at the event horizon of the Vaidya-Bonner black hole are presented. We find that the Hawking temperature will increase, but the entropy will decrease compared with the case without the Lorentz Invariation Violation modification.
机译:在非营养球对称vaidya-Bonner黑洞的时空中,研究了对具有任意旋转的尖端隧道辐射的精确改变。考虑到串理论,量子重力理论和非间抗球形对称时空中的Rarita-Schwinger方程的光色散关系,我们从而获得了具有任意旋转的离子米的精确修正的动态方程。通过求解等式,提出了Vaidya-Bonner黑洞事件范围内具有任意旋转,霍克宁温度和熵的修改的隧道速率。我们发现Hawking的温度会增加,但与没有Lorentz Invirion违规修改的情况相比,熵将减少。

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