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Operational General Relativity: Possibilistic, Probabilistic, and Quantum

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arxiv 1608.06940 v1 pith:ADLEESLC submitted 2016-08-24 gr-qc hep-thquant-ph

classification gr-qchep-thquant-ph
keywords quantumoperationaltheoryintroducepossibilisticprobabilisticsomecompositional
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In this paper we develop an operational formulation of General Relativity similar in spirit to existing operational formulations of Quantum Theory. To do this we introduce an operational space (or op-space) built out of scalar fields. A point in op-space corresponds to some nominated set of scalar fields taking some given values in coincidence. We assert that op-space is the space in which we observe the world. We introduce also a notion of agency (this corresponds to the ability to set knob settings just like in Operational Quantum Theory). The effects of agents' actions should only be felt to the future so we introduce also a time direction field. Agency and time direction can be understood as effective notions. We show how to formulate General Relativity as a possibilistic theory and as a probabilistic theory. In the possibilistic case we provide a compositional framework for calculating whether some operationally described situation is possible or not. In the probabilistic version we introduce probabilities and provide a compositional framework for calculating the probability of some operationally described situation. Finally we look at the quantum case. We review the operator tensor formulation of Quantum Theory and use it to set up an approach to Quantum Field Theory that is both operational and compositional. Then we consider strategies for solving the problem of Quantum Gravity. By referring only to operational quantities we are able to provide formulations for the possibilistic, probabilistic, and (the nascent) quantum cases that are manifestly invariant under diffeomorphisms.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Generalizing Bell nonlocality without global causal assumptions

    quant-ph 2024-11 conditional novelty 7.0 of 10

    Antinomicity generalizes Bell nonlocality to single-round communication scenarios and yields a strict hierarchy DC ⊊ PC ⊊ QP ⊊ qC.

  2. Quantum clocks and the temporal localisability of events in the presence of gravitating quantum systems

    quant-ph 2019-08 conditional novelty 7.0 of 10

    An event is time-delocalised from the perspective of other gravitationally interacting clocks but always sharply localised from the perspective of the clock that triggers it.

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