论文标题

浴诱导的相关性提高了低温下的温度计精度

Bath-Induced Correlations Enhance Thermometry Precision at Low Temperatures

论文作者

Planella, Guim, Cenni, Marina F. B., Acin, Antonio, Mehboudi, Mohammad

论文摘要

我们研究了浴诱导的相关性在冷骨浴温度估计中的作用。我们的协议包括多个没有相互作用的探针,也没有最初相互关联。它们与肺泡样品相互作用并达到非热稳态,该稳态可以估算样品的温度。众所周知,在稳定状态下,这种非相互作用的探针可能相互关联,甚至纠缠在一起。但是,这些相关性在计量学中的影响尚未得到深入研究。在这里,我们研究了它们在冷骨气体温度计中的作用,并表明,尽管是经典的,但浴室诱导的相关性可能会导致高度高度计量法的显着提高。在低温下,改善尤为重要,在低温下,高精度温度计尤其要求。所提出的温度计方案不需要对探针进行任何精确的动力学控制并调整参数,并且在初始制备中对噪声具有鲁棒性,因为它是建立在系统的自然耗散动力学产生的稳态上的。因此,我们的结果提出了在低温下的温度测定法,例如在冷气和玻色 - 内施泰因冷凝水中的新可能性。

We study the role of bath-induced correlations in temperature estimation of cold bosonic baths. Our protocol includes multiple probes, that are not interacting, nor are they initially correlated to each other. They interact with a bosonic sample and reach a nonthermal steady state, which is measured to estimate the temperature of the sample. It is well known that in the steady state such noninteracting probes may get correlated to each other and even entangled. Nonetheless, the impact of these correlations in metrology has not been deeply investigated yet. Here, we examine their role for thermometry of cold bosonic gases and show that, although being classical, bath-induced correlations can lead to significant enhancement of precision for thermometry. The improvement is especially important at low temperatures, where attaining high precision thermometry is particularly demanding. The proposed thermometry scheme does not require any precise dynamical control of the probes and tuning the parameters and is robust to noise in initial preparation, as it is built upon the steady state generated by the natural dissipative dynamics of the system. Therefore, our results put forward new possibilities in thermometry at low temperatures, of relevance, for instance, in cold gases and Bose-Einstein condensates.

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