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Semi-Device-Independent Certification of Causal Nonseparability with Trusted Quantum Inputs

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arxiv 2107.10877 v2 pith:O5UUL5WT submitted 2021-07-22 quant-ph

classification quant-ph
keywords causalquantumcausallynonseparableinputstrustedcertificationnonseparability
verification ladder T0 review T1 audit T2 compute T3 formal
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While the standard formulation of quantum theory assumes a fixed background causal structure, one can relax this assumption within the so-called process matrix framework. Remarkably, some processes, termed causally nonseparable, are incompatible with a definite causal order. We explore a form of certification of causal nonseparability in a semi-device-independent scenario where the involved parties receive trusted quantum inputs, but whose operations are otherwise uncharacterised. Defining the notion of causally nonseparable distributed measurements, we show that certain causally nonseparable processes which cannot violate any causal inequality, including the canonical example of the quantum switch, can generate noncausal correlations in such a scenario. Moreover, by imposing some further natural structure to the untrusted operations, we show that all bipartite causally nonseparable process matrices can be certified with trusted quantum inputs.

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