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Galilei covariance and Einstein's equivalence principle in quantum reference frames

机译:量子参考系中的伽利略协方差和爱因斯坦等价原理

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The covariance of the Schrodinger equation under Galilei boosts and the compatibility of nonrelativistic quantum mechanics with Einstein's equivalence principle have been constrained for so long to the existence of a superselection rule which would prevent a quantum particle from being found in superposition states of different masses. In an effort to avoid this expedient, and thus allow nonrelativistic quantum mechanics to account for unstable particles, recent works have suggested that the usual Galilean transformations are inconsistent with the nonrelativistic limit implied by the Lorentz transformation. Here we approach the issue in a fundamentally different way. Using a formalism of unitary transformations and employing quantum reference frames rather than immaterial coordinate systems, we show that the Schrodinger equation, although form variant, is fully compatible with the aforementioned principles of relativity.
机译:伽利略助推下的薛定inger方程的协方差以及非相对论量子力学与爱因斯坦等价原理的相容性一直受制于超选择规则的存在,该规则会阻止在不同质量的叠加态中发现量子粒子。为了避免这种权宜之计,从而使非相对论量子力学能够解释不稳定粒子,最近的工作表明,通常的伽利略变换与洛伦兹变换所隐含的非相对论极限不一致。在这里,我们以根本不同的方式处理该问题。使用of变换的形式主义并使用量子参考系而不是非物质坐标系,我们证明了薛定inger方程,尽管是形式变体,但与上述相对论完全兼容。

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