A simulated entangled-photon polarization anisotropy technique combined with neural network analysis enables remote nanosecond-scale temperature tracking during femtosecond laser ablation.
Observation of simultaneity in parametric production of optical photon pairs,
2 Pith papers cite this work. Polarity classification is still indexing.
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Sunlight produces polarization-entangled photons through SPDC, achieving concurrence 0.905, fidelity 0.939, and Bell violation S=2.54 exceeding the classical limit.
citing papers explorer
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Principle of Entangled-Photon Thermometry for Ultrafast Laser Processing
A simulated entangled-photon polarization anisotropy technique combined with neural network analysis enables remote nanosecond-scale temperature tracking during femtosecond laser ablation.
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Generating quantum entanglement from sunlight
Sunlight produces polarization-entangled photons through SPDC, achieving concurrence 0.905, fidelity 0.939, and Bell violation S=2.54 exceeding the classical limit.