论文标题

探测器在加速度叠加中的影响

Unruh effect for detectors in superposition of accelerations

论文作者

Barbado, Luis C., Castro-Ruiz, Esteban, Apadula, Luca, Brukner, Časlav

论文摘要

未造成的效应是即使惯性观察者经历真空状态,也会加速观察者的现象。特别是,预计均匀加速的观察者可以测量与加速度成正比的热辐射。在这里,我们考虑了遵循Minkowski时空中不同加速轨迹的量子叠加的检测器的临界值。更确切地说,我们分析了尖的多层粒子探测器的激发,该粒子探测器与无质量的真实标量场并在加速轨迹的叠加中移动。我们发现,通常,检测器激发的状态不是单独使用明确定义的加速度的每个轨迹的热光谱特性的(凸)混合物。相反,对于某些轨迹和激发水平,以及测量轨迹状态,检测器激发的状态还具有外部术语。这些“热状态的叠加”的非对角线术语与该领域与检测器的内部自由度相互作用后留下的不同可能状态的区分性有关。

The Unruh effect is the phenomenon that accelerated observers detect particles even when inertial observers experience the vacuum state. In particular, uniformly accelerated observers are predicted to measure thermal radiation that is proportional to the acceleration. Here we consider the Unruh effect for a detector that follows a quantum superposition of different accelerated trajectories in Minkowski spacetime. More precisely, we analyse the excitations of a pointlike multilevel particle detector coupled to a massless real scalar field and moving in the superposition of accelerated trajectories. We find that the state of the detector excitations is, in general, not a mere (convex) mixture of the thermal spectrum characteristics of the Unruh effect for each trajectory with well-defined acceleration separately. Rather, for certain trajectories and excitation levels, and upon the measurement of the trajectory state, the state of the detector excitations features in addition off-diagonal terms. The off-diagonal terms of these "superpositions of thermal states" are related to the distinguishability of the different possible states in which the field is left after its interaction with detector's internal degrees of the freedom.

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