Affiliation:
1. Tata Institute of Fundamental Research , Homi Bhabha Road , Mumbai 400005, India
Abstract
Abstract
The Ghirardi-Rimini-Weber theory of spontaneous collapse offers a possible resolution of the quantum measurement problem. In this theory, the wave function of a particle spontaneously and repeatedly localises to one or the other random position in space, as a consequence of the hypothesised quantum jumps. In between jumps, the wave function undergoes the usual Schrödinger evolution. In the present paper, we suggest that these jumps take place in Hilbert space, with no reference to physical space and a physical three-dimensional space arises as a consequence of localisation of macroscopic objects in the universe. That is, collapse of the wave-function is responsible for the origin of space. We then suggest that similar jumps take place for a hypothetical time operator in Hilbert space and classical time, as we know it emerges from localisation of this time operator, for macroscopic objects. More generally, the jumps are suggested to take place in an operator space-time in Hilbert space, leading to an emergent classical space-time.
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy,Mathematical Physics
Cited by
3 articles.
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1. Quantum gravity as an emergent phenomenon;International Journal of Modern Physics D;2019-10
2. Proposal for a New Quantum Theory of Gravity;Zeitschrift für Naturforschung A;2019-05-18
3. Space-time from Collapse of the Wave-function;Zeitschrift für Naturforschung A;2018-11-13