论文标题

Bose-Einstein冷凝物的干涉测量值检测器

Interferometric Unruh detectors for Bose-Einstein condensates

论文作者

Gooding, Cisco, Biermann, Steffen, Erne, Sebastian, Louko, Jorma, Unruh, William G., Schmiedmayer, Joerg, Weinfurtner, Silke

论文摘要

iNRUH效应预测了通过真空移动的加速检测器的热响应。在这里,我们提出了一种干涉方案,使用与Bose-Einstein冷凝物(BEC)耦合的局部激光器(BEC)观察圆形不合理效应的类似物。冷凝物中的量子波动受到有效的相对论场理论的控制,如证明,耦合激光场充当有效的Unruh-Dewitt检测器。有效的光速降低了BEC中声速的12个数量级。对于接近音速的检测器,在实验上可以观察到模拟系统中的INRUH效果的观察。

The Unruh effect predicts a thermal response for an accelerated detector moving through the vacuum. Here we propose an interferometric scheme to observe an analogue of the circular Unruh effect using a localized laser coupled to a Bose-Einstein condensate (BEC). Quantum fluctuations in the condensate are governed by an effective relativistic field theory, and as demonstrated, the coupled laser field acts as an effective Unruh-DeWitt detector thereof. The effective speed of light is lowered by 12 orders of magnitude to the sound velocity in the BEC. For detectors traveling close to the sound speed, observation of the Unruh effect in the analogue system becomes experimentally feasible.

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