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Pauli Measurements Are Near-Optimal for Single-Qubit Tomography

Published 29 Jul 2025 in quant-ph and cs.CC | (2507.22001v1)

Abstract: We provide the first non-trivial lower bounds for single-qubit tomography algorithms and show that at least ${\Omega}\left(\frac{10N}{\sqrt{N} \varepsilon2}\right)$ copies are required to learn an $N$-qubit state $\rho\in\mathbb{C}{d\times d},d=2N$ to within $\varepsilon$ trace distance. Pauli measurements, the most commonly used single-qubit measurement scheme, have recently been shown to require at most $O\left(\frac{10N}{\varepsilon2}\right)$ copies for this problem. Combining these results, we nearly settle the long-standing question of the complexity of single-qubit tomography.

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