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首页> 外文期刊>Journal of High Energy Physics >Unruh effect under non-equilibrium conditions: oscillatory motion of an Unruh-DeWitt detector
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Unruh effect under non-equilibrium conditions: oscillatory motion of an Unruh-DeWitt detector

机译:非平衡条件下的Unruh效应:Unruh-DeWitt检测器的振荡运动

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The Unruh effect refers to the thermal fluctuations a detector experiences while undergoing linear motion with uniform acceleration in a Minkowski vacuum. This thermality can be demonstrated by tracing the vacuum state of the field over the modes beyond the accelerated detector’s event horizon. However, the event horizon is well-defined only if the detector moves with eternal uniform linear acceleration. This idealized condition cannot be fulfilled in realistic situations when the motion unavoidably involves periods of non-uniform acceleration. Many experimental proposals to test the Unruh effect are of this nature. Often circular or oscillatory motion, which lacks an obvious geometric description, is considered in such proposals. The proper perspective for theoretically going beyond, or experimentally testing, the Unruh-Hawking effect in these more general conditions has to be offered by concepts and techniques in non-equilibrium quantum field theory. In this paper we provide a detailed analysis of how an Unruh-DeWitt detector undergoing oscillatory motion responds to the fluctuations of a quantum field. Numerical results for the late-time temperatures of the oscillating detector are presented. We comment on the digressions of these results from what one would obtain from a naive application of Unruh’s result.
机译:Unruh效应是指检测器在Minkowski真空中以均匀加速度经历线性运动时经历的热波动。可以通过在加速检测器的事件范围以外的模式上跟踪场的真空状态来证明这种热度。但是,只有当检测器以永恒的均匀线性加速度移动时,事件范围才是明确定义的。当运动不可避免地涉及到不均匀的加速度周期时,在现实情况下无法满足这种理想条件。许多测试Unruh效应的实验性提议就是这种性质。在这些建议中,通常考虑缺乏明显的几何描述的圆周运动或振荡运动。非平衡量子场理论中的概念和技术必须为在这些更一般的条件下从理论上超越Unruh-Hawking效应或进行实验测试提供适当的视角。在本文中,我们提供了对进行振荡运动的Unruh-DeWitt检测器如何对量子场的波动做出响应的详细分析。给出了振动检测器后期温度的数值结果。我们评论这些结果的偏离之处,就是从对Unruh结果的幼稚应用中可以得到的结果。

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