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Perspectives About the Quantum Entropy in Bohm's Approach to Relativistic Quantum Mechanics and Quantum Field Theory

机译:关于鲍姆相对论量子力学和量子场论方法中量子熵的观点

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摘要

Thanks to the geometrodynamic information contained in the quantum potential, Bohm's interpretation of quantum mechanics can describe atomic and subatomic processes remaining faithful to the principle of causality and the motion dogma. According to a recent re-reading of Bohm's approach a physical quantity appropriately called "quantum entropy," which describes the change of the geometry in the quantum regime, emerges as the ultimate visiting card which determines the action of the quantum potential. In this article, some interesting perspectives introduced by the quantum entropy towards a new suggestive reading of a Bohmian approach to relativistic quantum mechanics and quantum field theory are analysed.
机译:多亏了量子势中包含的地球动力学信息,鲍姆对量子力学的解释可以描述仍然忠实于因果关系和运动教条的原子和亚原子过程。根据最近对Bohm方法的重读,描述了量子态中几何形状变化的物理量被适当地称为“量子熵”,它是确定量子势作用的最终名片。在本文中,分析了由量子熵引入的一些有趣观点,这些观点为对有关相对论量子力学和量子场论的玻尔方法的一种新的有启发性的解读进行了分析。

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