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The photon-neutrino interaction in non-commutative gauge field theory and astrophysical bounds

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In this letter we propose a possible mechanism of left- and right-handed neutrino couplings to photons, which arises quite naturally in non-commutative gauge field theory. We estimate the predicted additional energy-loss in stars induced by space-time non-commutativity. The usual requirement that any new energy-loss mechanism in globular stellar clusters should not excessively exceed the standard neutrino losses implies a scale of non-commutative gauge theory above the scale of weak interactions.

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Entanglement through high-energy scattering in noncommutative quantum electrodynamics

hep-th · 2025-06-18 · conditional · novelty 6.0

In noncommutative QED, tree-level photon and head-on fermion scattering with opposite helicities give the same concurrence as gluon scattering, maximal at a 90-degree scattering angle, while a right-angle fermion collision yields concurrence that depends on the noncommutativity scale and can vanish.

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  • Entanglement through high-energy scattering in noncommutative quantum electrodynamics hep-th · 2025-06-18 · conditional · none · ref 15 · internal anchor

    In noncommutative QED, tree-level photon and head-on fermion scattering with opposite helicities give the same concurrence as gluon scattering, maximal at a 90-degree scattering angle, while a right-angle fermion collision yields concurrence that depends on the noncommutativity scale and can vanish.