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Experimental search for neutron - mirror neutron oscillations using storage of ultracold neutrons

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arxiv 0706.3600 v1 pith:I5HNG6K7 submitted 2007-06-25 nucl-ex

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keywords neutronmirrorfieldmagneticoscillationtransitionsexperimentallimit
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The idea of a hidden sector of mirror partners of elementary particles has attracted considerable interest as a possible candidate for dark matter. Recently it was pointed out by Berezhiani and Bento that the present experimental data cannot exclude the possibility of a rapid oscillation of the neutron n to a mirror neutron n' with oscillation time much smaller than the neutron lifetime. A dedicated search for vacuum transitions n->n' has to be performed at weak magnetic field, where both states are degenerate. We report the result of our experiment, which compares rates of ultracold neutrons after storage at a weak magnetic field well below 20 nT and at a magnetic field strong enough to suppress the seeked transitions. We obtain a new limit for the oscillation time of n-n' transitions, tau_osc (90% C.L.) > 414 s. The corresponding limit for the mixing energy of the normal and mirror neutron states is delta_m (90% C.L.) < 1.5x10-18 eV.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Overdamping of Neutron-Mirror-Neutron Transitions in Neutron Stars

    hep-ph 2026-03 conditional novelty 6.5 of 10

    Collisional decoherence overdamps n–n′ transitions in neutron stars, yielding Γ ≈ 4ε²/M ≪ oscillation rates and a mirror admixture suppressed by ~4ε²/M² at all times.

  2. Fundamental Nuclear and Particle Physics At Neutron Sources

    nucl-ex 2025-06 unverdicted novelty 2.0 of 10

    A community whitepaper makes the case that ESS and neutron sources offer a competitive, complementary route to search for new physics, with proposed experiments in neutron decay, EDM, baryon number violation, neutrino...

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