Brochure 发表于 2025-3-25 07:19:20
http://reply.papertrans.cn/83/8290/828980/828980_21.pngMalaise 发表于 2025-3-25 08:55:12
Christina Giarmatzi sich mit den Möglichkeiten, die die Informationstechnologie seit etwa den 1960er Jahren in breiterem Ausmaß zur Verfügung stellte. Mit den Erkenntnissen aus den ersten, aus heutiger Sicht oft eher simplen Computerexperimenten lag es bald nahe, auch konkretere Entwicklungen und Prozesse, als sie dieHemoptysis 发表于 2025-3-25 12:49:00
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Causal Polytopes,We characterise the set of correlations between quantum labs that respect causality and prove that they form a convex polytope. We show the technique of polytope characterisation—how to obtain the vertices, which are input to a software to obtain the facets—for a bipartite scenario and apply it in the simplest tripartite case.胆小懦夫 发表于 2025-3-26 02:59:04
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http://reply.papertrans.cn/83/8290/828980/828980_27.png蔑视 发表于 2025-3-26 10:26:46
Experimental Test of a Classical Causal Model for Quantum Correlations,his model holds. With the same setup, we also obtain correlations that cannot be explained with this causal model, therefore ruling out completely this causal model as an explanation for quantum correlations in a Bell-type experiment.Outspoken 发表于 2025-3-26 14:10:52
A Quantum Causal Discovery Algorithm,x formalism, one can discover the quantum causal model (the connections between the events) by checking which linear constraints the process matrix satisfies. We write an algorithm in MatLab—available on github—that discovers the quantum causal model of a process matrix. It is the first quantum causal discovery algorithm.Conclave 发表于 2025-3-26 19:16:55
Summary,For the n-lab case we introduce the concept of dynamical causal order. We develop mathematical tools to witness causally non-separable quantum processes and to study causal polytopes. We rule out a causal model for a Bell experiment and develop the first quantum causal discovery algorithm for the discovery of quantum causal models.