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Quantumness of correlations and Maxwell's demon in molecular excitations created by neutron scattering

机译:中子散射在分子激发中的相关性量子和麦克斯韦恶魔

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摘要

Nonclassical correlations known as entanglement, quantum discord, quantum deficit, measurement-induced disturbance, quantum Maxwell's demon, etc., may provide novel insights into quantum-information processing, quantum-thermodynamics processes, open-system dynamics, quantum molecular dynamics, and general quantum chemistry. We study a new effect of quantumness of correlations accompanying collision of two distinguishable quantum systems A and B, the latter being part of a larger (interacting) system B+D. In contrast to the common assumption of a classical environment or demon D, the quantum case exhibits striking new qualitative features. Here, in the context of incoherent inelastic neutron scattering from H-atoms which create molecular excitations (vibration, rotation, translation), we report theoretical and experimental evidence of a new phenomenon: a considerably reduced effective mass of H, or equivalently, an anomalous momentum-transfer deficit in the neutron-H collision. These findings contradict conventional theoretical expectations even qualitatively, but find a straightforward interpretation in the new theoretical frame under consideration. (c) 2015 Wiley Periodicals, Inc.
机译:称为纠缠,量子不和谐,量子赤字,测量引起的干扰,量子麦克斯韦恶魔等非经典相关性,可以为量子信息处理,量子热力学过程,开放系统动力学,量子分子动力学和一般性提供新颖的见解。量子化学。我们研究了伴随两个可区分的量子系统A和B碰撞而产生的相关性量子效应的新影响,后者是较大的(相互作用的)系统B + D的一部分。与经典环境或恶魔D的通常假设相反,量子案例具有惊人的新定性特征。在此,在H原子发生非连续非弹性中子散射的情况下,该散射会产生分子激发(振动,旋转,平移),我们报告了一种新现象的理论和实验证据:H的有效质量大大降低,或者等效地,异常中子-H碰撞中的动量传递缺陷。这些发现甚至在质上与传统的理论期望相矛盾,但是在所考虑的新理论框架中找到了直接的解释。 (c)2015年威利期刊有限公司

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