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Nucleon momentum gap in asymmetric nuclear matter

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arxiv 2201.01550 v1 pith:P2QZETP5 submitted 2022-01-05 nucl-th nucl-ex

classification nucl-thnucl-ex
keywords momentumnucleinucleonscorrelationsfermineutronneutron-protonnucleon
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abstract

For more than half a century, nucleons are considered to move continuously in the nuclei. Recent electron-scattering experiments indicate about 20$\sim$25\% nucleons in heavier nuclei are involved in the neutron-proton short-range correlations. Nucleons in the nuclei thus have abnormal behavior unlike those in the non-interaction fermi gas. In the neutron-rich nuclei, around the Fermi momentum, the neutron-proton short-range correlations lead to a momentum gap in the proton momentum distribution, which is circumstantially supported by the pionic experimental data. Likewise, there should also be a neutron momentum gap in the proton-rich nuclei. Nucleon momentum gap is thought to have profound and extensive implications in the studies ranging from particle physics to neutron stars as well as ultra-cold atomic gases.

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  1. In-medium effects of nucleon-nucleon cross sections in heavy-ion collisions

    nucl-th 2025-07 conditional novelty 5.0 of 10

    Using BHF-derived in-medium cross sections in the IBUU transport model, the paper shows that nuclear stopping and differential flow are sensitive to scattering-amplitude, density-of-states, and total-momentum effects,...

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