Entropy for theories with indefinite causal structure
arXiv:0910.1323 · doi:10.1088/1742-6596/306/1/012043
Abstract
Entropy is a concept that has traditionally been reliant on a definite notion of causality. However, without a definite notion of causality, the concept of entropy is not all lost. Indefinite causal structure results from combining probabilistic predictions and dynamical space-time. Combining the probabilistic nature of quantum theory and dynamical treatment space-time from general relativity is an approach to the problem of quantum gravity. The causaloid framework lays the mathematical groundwork to be able to treat indefinite causal structure. In this paper, we build on the causaloid mathematics and define a causally-unbiased entropy for an indefinite causal structure. In defining a causally-unbiased entropy, there comes about an emergent idea of causality in the form of a measure of causal connectedness, termed the Q factor.
11 pages, 2 figures
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Cited by in corpus (5)
- Reformulating and Reconstructing Quantum Theory
- The Construction Interpretation: Conceptual Roads to Quantum Gravity
- Correlation Measure Equivalence in Dynamic Causal Structures of Quantum Gravity
- Generalizing Entanglement
- Revisiting dynamics of quantum causal structures -- when can causal order evolve?