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Quantum mechanics in noninertial reference frames: Relativistic accelerations and fictitious forces

机译:非惯性参考系中的量子力学:相对论加速度和虚拟力

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One-particle systems in relativistically accelerating reference frames can be associated with a class of unitary representations of the group of arbitrary coordinate transformations, an extension of the Wigner-Bargmann definition of particles as the physical realization of unitary irreducible representations of the Poincare group. Representations of the group of arbitrary coordinate transformations become necessary to define unitary operators implementing relativistic acceleration transformations in quantum theory because, unlike in the Galilean case, the relativistic acceleration transformations do not themselves form a group. The momentum operators that follow from these representations show how the fictitious forces in noninertial reference frames are generated in quantum theory. (C) 2016 Published by Elsevier Inc.
机译:相对论加速参考系中的单粒子系统可以与任意坐标变换组的一元表示形式相关联,这是粒子的Wigner-Bargmann定义的扩展,是庞加莱群的不可约单一表示形式的物理实现。为了定义实现量子理论中相对论加速度变换的unit算子,必须使用任意坐标变换组的表示形式,因为与伽利略情况不同,相对论加速度变换本身并不构成一个组。从这些表示中得出的动量算符表明了在量子理论中非惯性参考系中的虚拟力是如何产生的。 (C)2016由Elsevier Inc.发布

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