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Enabling computation of correlation bounds for finite-dimensional quantum systems via symmetrisation
- Source :
- Physical Review Letters, Vol. 122, No 070501 (2019)
- Publication Year :
- 2018
-
Abstract
- We present a technique for reducing the computational requirements by several orders of magnitude in the evaluation of semidefinite relaxations for bounding the set of quantum correlations arising from finite-dimensional Hilbert spaces. The technique, which we make publicly available through a user-friendly software package, relies on the exploitation of symmetries present in the optimisation problem to reduce the number of variables and the block sizes in semidefinite relaxations. It is widely applicable in problems encountered in quantum information theory and enables computations that were previously too demanding. We demonstrate its advantages and general applicability in several physical problems. In particular, we use it to robustly certify the non-projectiveness of high-dimensional measurements in a black-box scenario based on self-tests of $d$-dimensional symmetric informationally complete POVMs.<br />A. T. and D. R. contributed equally for this project
- Subjects :
- Quantum Physics
Optimization problem
Computer science
Computation
Hilbert space
FOS: Physical sciences
General Physics and Astronomy
ddc:500.2
Computational Physics (physics.comp-ph)
01 natural sciences
symbols.namesake
Bounding overwatch
0103 physical sciences
symbols
Symmetrization
Quantum information
Quantum Physics (quant-ph)
010306 general physics
Algorithm
Quantum
Physics - Computational Physics
Block (data storage)
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Physical Review Letters, Vol. 122, No 070501 (2019)
- Accession number :
- edsair.doi.dedup.....833b64516c9c47f35bd998b11c86b142