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A Local Model of Explicit Wavefunction Collapse
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A model of spontaneous wavefunction collapse, which is explicitly local and Lorentz-invariant, is defined. Some of the predictions of the model for specific experimental situations are derived. It is shown that, although incompatible collapses, e.g. on opposite sides of an EPR-type of experiment, can occur, they will not persist in time and that eventually only compatible results will be obtained. The probabilities of particular results, however, will in general not agree with the predictions of quantum theory. We argue that it is unlikely that the deviations would have been seen in any experiment yet performed.
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Towards relativistic generalization of collapse models
A relativistic collapse dynamics with a local quadratic field operator and non-Markovian Lorentz-invariant noise is shown to preserve microcausality and give a finite energy rate under normal ordering.
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