论文标题

旋转的4D高斯河网黑洞作为粒子加速器

Rotating 4D Gauss-Bonnet black hole as particle accelerator

论文作者

Kumara, A. Naveena, Rizwan, C. L. Ahmed, Hegde, Kartheek, Ali, Md Sabir, M, Ajith K.

论文摘要

我们证明,在事件地平线附近的两个一般颗粒碰撞期间,四维高斯黑洞可以充当具有任意高质量能量的粒子加速器。高斯河网耦合常数$α$,与Kerr Black Hole的结果偏离。我们的结果表明,地平线结构,允许的角动量的范围和临界角动量取决于$α$的值。对于极端情况,质量中心的能量在地平线附近发散,表明高斯黑洞也可以充当粒子加速器,例如Kerr Black Hole。在探测普朗克量表物理学的背景下,这很有趣。对于非超级案例,存在有限的质量质量上限,其最大值取决于参数$α$。

We demonstrate that the four-dimensional Gauss-Bonnet black hole can act as a particle accelerator with arbitrarily high centre-of-mass energy, during the collision of two general particles near the event horizon. The Gauss-Bonnet coupling constant $α$, provides a deviation in the results from that of Kerr black hole. Our results show that the horizon structure, the range of allowed angular momentum and the critical angular momentum depend on the value of $α$. For extremal cases, the centre-of-mass energy diverges near the horizon, suggesting that Gauss-Bonnet black hole can also act as a particle accelerator like a Kerr black hole. This is interesting in the context of probing the Planck scale physics. For the non-extremal case there exists a finite upper bound on the centre-of-mass energy, the maximal value of which depends on the parameter $α$.

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