Holographic Schwinger Effect with a Rotating Probe D3-Brane

Holographic Schwinger Effect with a Rotating Probe D3-Brane
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DOI:
10.1155/2023/6614276
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发表时间:
2016-04
影响因子:
1.7
通讯作者:
Haoting Xu;M. Ilyas;Yongchang Huang
Haoting Xu;M. Ilyas;Yongchang Huang
中科院分区:
物理与天体物理4区
文献类型:
--
作者:
Haoting Xu;M. Ilyas;Yongchang Huang

文献摘要

相似文献

此外,本文还讨论了用旋转探头D3膜研究全息Schwinger效应的可能性。我们发现,对于Schwinger效应中的零温度情况,角速度越快,测试粒子对在D3膜上的距离越远,总势能势垒也会变得更高更宽。本文指出,在有限温度下,当无转动的S 5接近视界时,由于粒子仍处于湮没态,这是一个绝对真空态,薛温格效应失效。然而,S 5号中的角速度将避免在地平线附近存在绝对真空。对于零温态和有限温态,所得结果与Dirac-Born-Infeld(DBI)作用的结果完全一致。因此,本文的理论是一致的。所有这些都表明,这些理论将在未来的配对生产研究中发挥重要作用。
This paper, among other things, talks about possible research on the holographic Schwinger effect with a rotating probe D3-brane. We discover that for the zero temperature case in the Schwinger effect, the faster the angular velocity and the farther the distance of the test particle pair at D3-brane, the potential barrier of total potential energy also grows higher and wider. This paper shows that at a finite temperature, when S 5 without rotation is close to the horizon, the Schwinger effect fails because the particles remain in an annihilate state, which is an absolute vacuum state. However, the angular velocity in S 5 will avoid the existence of an absolute vacuum near the horizon. For both zero and finite temperature states, the achieved results completely agree with the results of the Dirac-Born-Infeld (DBI) action. So the theories in this paper are consistent. All of these show that these theories will play important roles in future pair production research.