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Exploration of quantum-memory-assisted entropic uncertainty relations in a noninertial frame

机译:非线性框架中量子记忆辅助熵不确定性关系的探讨

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The uncertainty principle offers a bound to show accuracy of the simultaneous measurement outcome for two incompatible observables. In this letter, we investigate quantum-memory-assisted entropic uncertainty relation (QMA-EUR) when the particle to be measured stays at an open system, and another particle is treated as quantum memory under a noninertial frame. In such a scenario, the collective influence of the unital and nonunital noise environment, and of the relativistic motion of the system, on the QMA-EUR is examined. By numerical analysis, we conclude that, firstly, the noises and the Unruh effect can both increase the uncertainty, due to the decoherence of the bipartite system induced by the noise or Unruh effect; secondly, the uncertainty is more affected by the noises than by the Unruh effect from the acceleration; thirdly, unital noises can reduce the uncertainty in long-time regime. We give a possible physical interpretation for those results: that the information of interest is redistributed among the bipartite, the noisy environment and the physically inaccessible region in the noninertial frame. Therefore, we claim that our observations provide an insight into dynamics of the entropic uncertainty in a noninertial frame, and might be important to quantum precision measurement under relativistic motion.
机译:不确定性原则提供了一个常规,以显示两个不相容的可观察到的同时测量结果的准确性。在这封信中,当要测量的颗粒停留在开放系统时,我们调查量子记忆辅助熵不确定关系(QMA-EUR),并且在非线性框架下,另一个颗粒被视为量子存储器。在这种情况下,研究了QMA-EUR的非特性和非事故噪声环境的集体影响,以及系统的相对论运动。通过数值分析,我们得出结论,首先,由于噪声或近似效应引起的二分体系的角质系统的角膜间隔,噪音和近析效果都可以增加不确定性;其次,不确定性受到噪声的影响,而不是通过加速度的近越突变;第三,起伏噪音可以减少长期制度的不确定性。我们为这些结果提供了可能的物理解释:利息的信息在二分之一,嘈杂的环境和非线性框架中的物理无法访问的区域中重新分配。因此,我们声称我们的观察结果熟悉非资讯框架中熵不确定性的动态,并且对相对论运动中的量子精密测量可能是重要的。

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