arXiv · 2506.19809
Universal and Efficient Quantum State Verification via Schmidt Decomposition and Mutually Unbiased Bases
Abstract
Efficient verification of multipartite quantum states is crucial to many applications in quantum information processing. By virtue of Schmidt decomposition and mutually unbiased bases, here we propose a universal protocol to verify arbitrary multipartite pure quantum states using adaptive local projective measurements. Moreover, we establish a universal upper bound on the sample complexity that is independent of the local dimensions. Numerical calculations further indicate that Haar-random pure states can be verified with a constant sample cost, irrespective of the qudit number and local dimensions, even in the adversarial scenario in which the source cannot be trusted. As alternatives, we provide several simpler variants that can achieve similar high efficiencies without using Schmidt decomposition. The simplest variant consists of only two distinct tests.
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Yunting Li, Huangjun Zhu. 2025-06-24. Universal and Efficient Quantum State Verification via Schmidt Decomposition and Mutually Unbiased Bases. https://doi.org/10.22331/q-2026-03-04-2011
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