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Can a charged decaying particle serve as an ideal clock in the presence of the magnetic field?
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We investigate a model of a supposedly ideal clock based on the decay rate of a charged particle in circular motion in a constant magnetic field. We show that the time measured by an ideal clock depends on the acceleration. However, the effect becomes visible at an order of magnitude of 10^{28} g, therefore confirming the validity of the ideal clock hyphotesis for realistic accelerations.
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Effects of uniform acceleration on quantum states and vacuum entanglement in relativistic quantum information
Uniform acceleration changes quantum clock rates and the vacuum entanglement seen by accelerated observers; tripartite vacuum entanglement is easier to harvest than bipartite entanglement.
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