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Quantum theory cannot violate a causal inequality
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Within quantum theory, we can create superpositions of different causal orders of events, and observe interference between them. This raises the question of whether quantum theory can produce results that would be impossible to replicate with any classical causal model, thereby violating a causal inequality. This would be a temporal analogue of Bell inequality violation, which proves that no local hidden variable model can replicate quantum results. However, unlike the case of non-locality, we show that quantum experiments \emph{can} be simulated by a classical causal model, and therefore cannot violate a causal inequality.
Forward citations
Cited by 2 Pith papers
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Routing Quantum Control of Causal Order
Every N-party quantum circuit with quantum control of causal order can be represented as a routed quantum circuit built from one fixed routed graph G_QC-QC(N).
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Optimal quantum metrology under energy constraints
Energy-constrained phase estimation has an ultimate precision scaling of 1/E² for unbounded dimension, and causal-superposition strategies can outperform definite-order strategies under the same energy budget.
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