arXiv · gr-qc/0509004
A new relativistic kinematics of accelerated systems
Abstract
We consider transformations between uniformly accelerated systems, assuming that the Clock Hypothesis is false. We use the proper velocity-time description of events rather than the usual space-time description in order to obtain linear transformations. Based on the generalized principle of relativity and the ensuing symmetry, we obtain transformations of Lorentz-type. We predict the existence of a maximal acceleration and time dilation due to acceleration. We also predict a Doppler shift due to acceleration of the source in addition to the shift due to the source's velocity. Based on our results, we explain the W. Kündig experiment, as reanalyzed by Kholmetski \textit{et al}, and obtain an estimate of the maximal acceleration.
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Yaakov Friedman, Yuriy Gofman. 2010-06-22. A new relativistic kinematics of accelerated systems. https://doi.org/10.1088/0031-8949%2F82%2F01%2F015004
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