论文标题

红外效应和unruh状态

Infrared Effects and the Unruh State

论文作者

Anderson, Paul R., Siahmazgi, Shohreh Gholizadeh, Scofield, Zachary P.

论文摘要

研究了在二维中各种永恒黑洞的UNRUH状态下量化标量场模式的详细行为。结果表明,量子场某些模式和对称的两点函数的晚期行为由红外效应确定。这些效果的性质取决于模式方程中是否具有有效的潜力以及这种潜力的形式。在这里,考虑了三种情况,另一种没有电势,两种势为无负的电势,在黑洞的事件范围内为零,在无穷大或宇宙学上为零。具体而言,电势是Delta功能电位,也是Schwarzschild-De保姆时空中大规模标量场发生的电势。在这两种情况下,散射效应都消除了在模式函数中的红外差异,否则将由归一化过程产生。当删除此类红外差异时,发现相对于过去的Black Hole Horizo​​n上的Kruskal时间为正频率的模式在径向坐标固定且时间坐标为Infinity的极限中零。相反,当没有电势并因此出现红外差异时,当固定径向坐标时,相同的模式在延迟时间限制中接近非零恒定值。当对对称的两点函数的行为研究在某些渐近平坦的黑洞空位中,在二维的某些渐近平坦的黑洞空位中,研究了磁场处于Unruh状态时的行为。在模式功能中,除去红外差异导致消除及时线性生长的术语。

Detailed behaviors of the modes of quantized scalar fields in the Unruh state for various eternal black holes in two dimensions are investigated. It is shown that the late-time behaviors of some of the modes of the quantum fields and of the symmetric two-point function are determined by infrared effects. The nature of these effects depends upon whether there is an effective potential in the mode equation and what form this potential takes. Here, three cases are considered, one with no potential and two with potentials that are nonnegative everywhere and are zero on the event horizon of the black hole and zero at either infinity or the cosmological horizon. Specifically, the potentials are a delta function potential and the potential that occurs for a massive scalar field in Schwarzschild-de Sitter spacetime. In both cases, scattering effects remove infrared divergences in the mode functions that would otherwise arise from the normalization process. When such infrared divergences are removed, it is found that the modes that are positive frequency with respect to the Kruskal time on the past black hole horizon approach zero in the limit that the radial coordinate is fixed and the time coordinate goes to infinity. In contrast, when there is no potential and thus infrared divergences occur, the same modes approach nonzero constant values in the late-time limit when the radial coordinate is held fixed. The behavior of the symmetric two-point function when the field is in the Unruh state is investigated for the case of a delta function potential in certain asymptotically flat black hole spacetimes in two dimensions. The removal of the infrared divergences in the mode functions results in the elimination of terms that grow linearly in time.

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