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K₁^(pm) mesons moving in nuclear matter

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arxiv 2404.04532 v2 pith:5VZAX2SE submitted 2024-04-06 nucl-th

K₁^(pm) mesons moving in nuclear matter

classification nucl-th
keywords massnuclearmesonsmattermediummomentumchangeschiral
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Observing the mass shifts of mesons immersed in nuclear matter is interesting, as the changes are expected to shed light on the effects of chiral symmetry breaking on the origin of hadron masses. At the same time, it is important to understand the momentum dependence of the masses for spin-1 mesons, as the changes manifest differently across the two polarization modes. Here, the mass shifts of $K_{1}^{\pm}$ mesons with finite three-momentum in nuclear medium are studied in the QCD sum rule approach. We find that the mass of $K_{1}^{+}$($K_{1}^{-}$) meson is increased(decreased) by the non-trivial momentum effect in both the transverse and longitudinal modes. Specifically, compared to its rest mass in the nuclear medium, in the transverse mode, the mass of $K_{1}^{+}(K_{1}^{-})$ is observed to shift by +2(-55) MeV, while in the longitudinal mode, the mass shift is +13(-11) MeV, all at a momentum of 0.5 GeV. Exploring the medium modifications of $K_{1}$ meson through kaon beams at J-PARC will provide insights on the partial restoration of chiral symmetry in nuclear matter.

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Cited by 3 Pith papers

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  2. Silent Failures in Quantized LLM Reasoning: A Taxonomy-Based Analysis of Hollow Convergence and Failure Mode Shifts

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  3. Polarization-dependent mass modifications of $\phi$ meson with finite momentum in nuclear matter

    hep-ph 2026-03 conditional novelty 6.0

    In nuclear matter, the phi meson's longitudinal polarization mass decreases quadratically with momentum; the transverse polarization mass stays constant.