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Charge symmetry breaking effects of $\omega$-$\rho^0$ mixing in relativistic mean-field model

Charge symmetry breaking effects of $\omega$-$\rho^0$ mixing in relativistic mean-field model

来源:Arxiv_logoArxiv
英文摘要

We present a relativistic mean-field model that incorporates charge symmetry breaking (CSB) of nuclear force via $ \omega $-$ \rho^0 $ meson mixing, along with corrections to the electromagnetic interaction including the nucleon form factors, first-order vacuum polarization, and Coulomb exchange and pairing terms. The model parameters are refitted using the mass differences of $ T = 1/2 $ mirror nuclei and ground-state properties of magic nuclei, yielding DD-ME-CSB parameter set. The DD-ME-CSB parameter set reproduces the mass differences of mirror nuclei reasonably well up to $ T = 2 $, demonstrating the importance of $ \omega $-$ \rho^0 $ mixing. A connection of the present model to a Skyrme-type CSB interaction is also established through a gradient expansion of the energy density functional.

Yusuke Tanimura、Tomoya Naito、Hiroyuki Sagawa、Myung-Ki Cheoun

物理学

Yusuke Tanimura,Tomoya Naito,Hiroyuki Sagawa,Myung-Ki Cheoun.Charge symmetry breaking effects of $\omega$-$\rho^0$ mixing in relativistic mean-field model[EB/OL].(2025-06-06)[2025-07-16].https://arxiv.org/abs/2506.06629.点此复制

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