Experimental optimal discrimination of $N$ states of a qubit with fixed rates of inconclusive outcomes

Fuente: arXiv
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Main Authors: Melo, L. F., Solís-Prosser, M. A., Jiménez, O., Delgado, A., Neves, L.
Format: Preprint
Published: 2024
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author Melo, L. F.
Solís-Prosser, M. A.
Jiménez, O.
Delgado, A.
Neves, L.
author_facet Melo, L. F.
Solís-Prosser, M. A.
Jiménez, O.
Delgado, A.
Neves, L.
contents In a general optimized measurement scheme for discriminating between nonorthogonal quantum states, the error rate is minimized under the constraint of a fixed rate of inconclusive outcomes (FRIO). This so-called optimal FRIO measurement encompasses the standard and well known minimum-error and optimal unambiguous (or maximum-confidence) discrimination strategies as particular cases. Here, we experimentally demonstrate the optimal FRIO discrimination between $N=2,3,5,$ and $7$ equally likely symmetric states of a qubit encoded in photonic path modes. Our implementation consists of applying a probabilistic quantum map which increases the distinguishability between the inputs in a controlled way, followed by a minimum-error measurement on the successfully transformed outputs. The results obtained corroborate this two-step approach and, in our experimental scheme, it can be straightforwardly extended to higher dimensions. The optimized measurement demonstrated here will be useful for quantum communication scenarios where the error rate and the inconclusive rate must be kept below the levels provided by the respective standard strategies.
format Preprint
id arxiv_https___arxiv_org_abs_2411_14537
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Experimental optimal discrimination of $N$ states of a qubit with fixed rates of inconclusive outcomes
Melo, L. F.
Solís-Prosser, M. A.
Jiménez, O.
Delgado, A.
Neves, L.
Quantum Physics
In a general optimized measurement scheme for discriminating between nonorthogonal quantum states, the error rate is minimized under the constraint of a fixed rate of inconclusive outcomes (FRIO). This so-called optimal FRIO measurement encompasses the standard and well known minimum-error and optimal unambiguous (or maximum-confidence) discrimination strategies as particular cases. Here, we experimentally demonstrate the optimal FRIO discrimination between $N=2,3,5,$ and $7$ equally likely symmetric states of a qubit encoded in photonic path modes. Our implementation consists of applying a probabilistic quantum map which increases the distinguishability between the inputs in a controlled way, followed by a minimum-error measurement on the successfully transformed outputs. The results obtained corroborate this two-step approach and, in our experimental scheme, it can be straightforwardly extended to higher dimensions. The optimized measurement demonstrated here will be useful for quantum communication scenarios where the error rate and the inconclusive rate must be kept below the levels provided by the respective standard strategies.
title Experimental optimal discrimination of $N$ states of a qubit with fixed rates of inconclusive outcomes
topic Quantum Physics
url https://arxiv.org/abs/2411.14537