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Impurities as a quantum thermometer for a Bose-Einstein condensate

机译:杂质作为玻色-爱因斯坦凝聚物的量子温度计

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摘要

We introduce a primary thermometer which measures the temperature of a Bose-Einstein Condensate in the sub-nK regime. We show, using quantum Fisher information, that the precision of our technique improves the state-of-the-art in thermometry in the sub-nK regime. The temperature of the condensate is mapped onto the quantum phase of an atomic dot that interacts with the system for short times. We show that the highest precision is achieved when the phase is dynamical rather than geometric and when it is detected through Ramsey interferometry. Standard techniques to determine the temperature of a condensate involve an indirect estimation through mean particle velocities made after releasing the condensate. In contrast to these destructive measurements, our method involves a negligible disturbance of the system.
机译:我们介绍了一种主要的温度计,用于测量sub-nK体制下的玻色-爱因斯坦冷凝物的温度。我们使用量子Fisher信息表明,我们的技术的精度提高了亚nK体制中测温技术的最新水平。冷凝液的温度被映射到与系统相互作用短时间的原子点的量子相上。我们表明,当相位是动态的而不是几何的并且通过Ramsey干涉测量法检测到相位时,可以实现最高的精度。确定冷凝水温度的标准技术包括通过释放冷凝水后的平均颗粒速度进行间接估算。与这些破坏性测量相反,我们的方法对系统的影响可忽略不计。

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