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Concurrence-Driven Path Entanglement in Phase-Modified Interferometry

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abstract

In this study, a novel experimental setup analogous to joint spin/polarization measurement experiments is proposed by establishing a direct relationship between path (momentum) entanglement and concurrence. The results demonstrate that joint-detection probabilities can be governed not only by phase shifts but also by concurrence, which arises from the angle between the motion direction of particles from the same source and the Beam Splitter (BS) axis. This approach aims to set a new standard in entanglement measurement by integrating path entanglement within a concurrence-based framework. Here, we first examine phase-retarder-modified Mach-Zehnder (MZ) configurations within single-quanton systems, subsequently extending this approach to two-quanton systems to establish a connection between spatial correlations and concurrence. Last, by analyzing joint-detection probabilities across various BS configurations, we evaluate the potential of these setups as analogs for spin/polarization measurement experiments.

fields

quant-ph 1

years

2025 1

verdicts

UNVERDICTED 1

representative citing papers

Berry Phase in Pathangled Systems

quant-ph · 2025-06-20 · unverdicted · novelty 6.0

Pathangled states allow Berry phases and production angles to serve as degrees of freedom for Bell correlations, with an approximate critical angle of 24.97 degrees marking the boundary between local-hidden-variable theories and quantum mechanics.

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  • Berry Phase in Pathangled Systems quant-ph · 2025-06-20 · unverdicted · none · ref 11 · internal anchor

    Pathangled states allow Berry phases and production angles to serve as degrees of freedom for Bell correlations, with an approximate critical angle of 24.97 degrees marking the boundary between local-hidden-variable theories and quantum mechanics.