Fast and robust quantum state tomography from few basis measurements

September 17, 2020 Β· Declared Dead Β· πŸ› Theory of Quantum Computation, Communication, and Cryptography

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Authors Fernando G. S. L. BrandΓ£o, Richard Kueng, Daniel Stilck FranΓ§a arXiv ID 2009.08216 Category quant-ph: Quantum Computing Cross-listed cs.DS Citations 35 Venue Theory of Quantum Computation, Communication, and Cryptography Last Checked 3 months ago
Abstract
Quantum state tomography is a powerful, but resource-intensive, general solution for numerous quantum information processing tasks. This motivates the design of robust tomography procedures that use relevant resources as sparingly as possible. Important cost factors include the number of state copies and measurement settings, as well as classical postprocessing time and memory. In this work, we present and analyze an online tomography algorithm designed to optimize all the aforementioned resources at the cost of a worse dependence on accuracy. The protocol is the first to give provably optimal performance in terms of rank and dimension for state copies, measurement settings and memory. Classical runtime is also reduced substantially and numerical experiments demonstrate a favorable comparison with other state-of-the-art techniques. Further improvements are possible by executing the algorithm on a quantum computer, giving a quantum speedup for quantum state tomography.
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