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Main Authors: Sagawa, Yuki, Hance, Jonte R., Hofmann, Holger F., Ono, Takafumi
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2505.14119
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author Sagawa, Yuki
Hance, Jonte R.
Hofmann, Holger F.
Ono, Takafumi
author_facet Sagawa, Yuki
Hance, Jonte R.
Hofmann, Holger F.
Ono, Takafumi
contents Quantum contextuality, where measurement outcomes depend on the measurement context, implies a failure of classical realism in quantum systems. As recently shown, the transition between measurement contexts can be mapped onto the path that a quantum particle takes through an interferometer. Here, we investigate the relation between contextuality and the counterfactual gain observed in the output ports of such an interferometer when one of the paths is blocked. It is shown that experimental evidence of contextuality can only be obtained when counterfactual gain is observed for a specific combination of blocked path and output port. Using a silicon photonic integrated circuit, we experimentally observe the counterfactual gain for a selection of input states and evaluate the associated evidence for contextuality. The results confirm that contextuality can only be observed in the presence of counterfactual gain.
format Preprint
id arxiv_https___arxiv_org_abs_2505_14119
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Quantum Contextuality Requires Counterfactual Gain
Sagawa, Yuki
Hance, Jonte R.
Hofmann, Holger F.
Ono, Takafumi
Quantum Physics
Quantum contextuality, where measurement outcomes depend on the measurement context, implies a failure of classical realism in quantum systems. As recently shown, the transition between measurement contexts can be mapped onto the path that a quantum particle takes through an interferometer. Here, we investigate the relation between contextuality and the counterfactual gain observed in the output ports of such an interferometer when one of the paths is blocked. It is shown that experimental evidence of contextuality can only be obtained when counterfactual gain is observed for a specific combination of blocked path and output port. Using a silicon photonic integrated circuit, we experimentally observe the counterfactual gain for a selection of input states and evaluate the associated evidence for contextuality. The results confirm that contextuality can only be observed in the presence of counterfactual gain.
title Quantum Contextuality Requires Counterfactual Gain
topic Quantum Physics
url https://arxiv.org/abs/2505.14119