Contextuality, Cohomology and Paradox
Abstract
Contextuality is a key feature of quantum mechanics that provides an important non-classical resource for quantum information and computation. Abramsky and Brandenburger used sheaf theory to give a general treatment of contextuality in quantum theory [New Journal of Physics 13 (2011) 113036]. However, contextual phenomena are found in other fields as well, for example database theory. In this paper, we shall develop this unified view of contextuality. We provide two main contributions: firstly, we expose a remarkable connection between contexuality and logical paradoxes; secondly, we show that an important class of contextuality arguments has a topological origin. More specifically, we show that "All-vs-Nothing" proofs of contextuality are witnessed by cohomological obstructions.
- Publication:
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arXiv e-prints
- Pub Date:
- February 2015
- DOI:
- arXiv:
- arXiv:1502.03097
- Bibcode:
- 2015arXiv150203097A
- Keywords:
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- Quantum Physics;
- Computer Science - Logic in Computer Science;
- Mathematics - Algebraic Topology
- E-Print:
- 18 pages, 4 figures