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quant-ph2026

Higher-order quantum processes respecting closed labs in a spacetime have quantum controlled causal order

Matthias Salzger, V. Vilasini

In quantum causality and quantum information, there is a vast landscape of abstract quantum protocols permitting cyclic or non-acyclic causal structures between operations, includi…

quant-ph2025

A structure theorem for complex-valued quasiprobability representations of physical theories

Rafael Wagner, Roberto D. Baldijão, Matthias Salzger +3

Quasiprobability representations are well-established tools in quantum information science, with applications ranging from the classical simulability of quantum computation to quan…

quant-ph2025

Superluminal Quantum Reference Frames

Amrapali Sen, Matthias Salzger, Łukasz Rudnicki

While particles cannot travel faster than the speed of light, nor can information, this assumption has over the years been frequently questioned. Most recently, it has been argued…

quant-ph2024

A decompositional framework for process theories in spacetime

Matthias Salzger, John H. Selby

There has been a recent surge of interest within the field of quantum foundations regarding incorporating ideas from general relativity and quantum gravity. However, many quantum i…

quant-ph2024

Mapping indefinite causal order processes to composable quantum protocols in a spacetime

Matthias Salzger, V. Vilasini

Formalisms for higher order quantum processes provide a theoretical formalisation of quantum processes where the order of agents' operations need not be definite and acyclic, but m…