Singular values of a sum of binary tensor products are weakly majorized by the sum of the tensor products of the factors' singular-value vectors, for any number of terms and any matrices.
Comparison of confidence regions for quantum state tomography
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abstract
The quantum state associated to an unknown experimental preparation procedure can be determined by performing quantum state tomography. If the statistical uncertainty in the data dominates over other experimental errors, then a tomographic reconstruction procedure must express this uncertainty. A rigorous way to accomplish this is via statistical confidence regions in state space. Naturally, the size of this region decreases when increasing the number of samples, but it also depends critically on the construction method of the region. We compare recent methods for constructing confidence regions as well as a reference method based on a Gaussian approximation. For the comparison, we propose an operational measure with the finding, that there is a significant difference between methods, but which method is preferable can depend on the details of the state preparation scenario.
fields
quant-ph 1years
2026 1verdicts
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Ky Fan majorization for binary tensor products
Singular values of a sum of binary tensor products are weakly majorized by the sum of the tensor products of the factors' singular-value vectors, for any number of terms and any matrices.