4.7 Article

Medium modification of the nucleon mechanical properties: Abel tomography case

期刊

EUROPEAN PHYSICAL JOURNAL C
卷 82, 期 8, 页码 -

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SPRINGER
DOI: 10.1140/epjc/s10052-022-10676-4

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资金

  1. Deutscher Akademischer Austauschdienst (DAAD)
  2. National Research Foundation of Korea - Korean government (Ministry of Education, Science and Technology, MEST) [2020R1F1A1067876, 2021R1A2C2093368, 2018R1A5A1025563]
  3. National Research Foundation of Korea [2021R1A2C2093368, 2020R1F1A1067876] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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This article investigates the changes in the gravitational form factors of the nucleon in nuclear matter and their effects on the stability and mechanical quantities of the nucleon. Using the in-medium modified SU(2) Skyrme model, the authors find that the broadening of the mass distribution in the medium causes the nucleon to swell in nuclear matter, and the mean square radii corresponding to the mass and angular momentum distributions increase in the nuclear medium.
We investigate how the gravitational form factors of the nucleon undergo changes in nuclear matter, emphasizing the Abel transformation from the three-dimensional (3D) Breit frame to the two-dimensional (2D) light-front frame. Since the gravitational form factors reveal the mechanical structure of the nucleon, we examine also the medium modifications of the energy-momentum, pressure, and shear-force distributions. We scrutinize the stabilities of the nucleon in nuclear matter. For this purpose, we employ the in-medium modified SU(2) Skyrme model to study these mechanical quantities of the nucleon, since it provides a simple but clear framework. In this in-medium modified SU(2) Skyrme model, the modification of pionic properties is performed by using low-energy pion-nucleus scattering data and the saturation properties of nuclear matter near the normal nuclear matter density, rho(0) = 0.5m(pi)(3). The results reveal how the nucleon swells in nuclear matter as the mass distribution of the nucleon is broadened in medium. We also show that the mean square radii corresponding to the mass and angular momentum distributions increase in nuclear medium. This feature is kept both in 3D and 2D cases. We visualize how the strong force fields inside the nucleon in the 2D plane are distributed and illustrate how these forces undergo change in nuclear matter.

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