Quantum State Tomography via Compressed Sensing
Leibniz University Hannover · California Institute of Technology · +2 more institutions
Abstract
We establish methods for quantum state tomography based on compressed sensing. These methods are specialized for quantum states that are fairly pure, and they offer a significant performance improvement on large quantum systems. In particular, they are able to reconstruct an unknown density matrix of dimension d and rank r using O(rdlog²d) measurement settings, compared to standard methods that require d² settings. Our methods have several features that make them amenable to experimental implementation: they require only simple Pauli measurements, use fast convex optimization, are stable against noise, and can be applied to states that are only approximately low rank. The acquired data can be used to certify…
Citation impact
- FWCI
- 48.17
- Percentile
- 100%
- References
- 15
Authors
5Topics & keywords
- Quantum tomography
- Quantum state
- Pauli exclusion principle
- Quantum
- Compressed sensing
- Computer science
- Tomography
- Dimension (graph theory)