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Hauptverfasser: Petrosyan, Tigran, Harutyunyan, Arus, Sedrakian, Armen
Format: Preprint
Veröffentlicht: 2025
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Online-Zugang:https://arxiv.org/abs/2512.01044
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author Petrosyan, Tigran
Harutyunyan, Arus
Sedrakian, Armen
author_facet Petrosyan, Tigran
Harutyunyan, Arus
Sedrakian, Armen
contents We study the influence of positrons on the outer crusts of neutron stars and the interiors of white dwarfs, introducing them as a novel component in both the composition of matter and in transport processes. We solve a system of coupled Boltzmann kinetic equations for the electron and positron distribution functions in the relaxation-time approximation, taking into account electron-ion, positron-ion, and electron-positron collisions. The relevant scattering matrix elements are calculated from one-plasmon exchange diagrams, with in-medium polarization tensors derived within hard-thermal-loop effective theory. Numerical results are obtained for matter composed of carbon nuclei. We find that the conductivity rises with temperature, following a power law sigma proportional to the 4th power of T in the semi-degenerate regime and sigma proportional to T in the nondegenerate regime, due to the intense creation of thermal electron-positron pairs and the resulting collisions among them. These results highlight the importance of including positrons in the transport properties of heated, dense astrophysical plasmas.
format Preprint
id arxiv_https___arxiv_org_abs_2512_01044
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Impact of positrons on electrical conductivity of hot and dense astrophysical plasma
Petrosyan, Tigran
Harutyunyan, Arus
Sedrakian, Armen
High Energy Astrophysical Phenomena
We study the influence of positrons on the outer crusts of neutron stars and the interiors of white dwarfs, introducing them as a novel component in both the composition of matter and in transport processes. We solve a system of coupled Boltzmann kinetic equations for the electron and positron distribution functions in the relaxation-time approximation, taking into account electron-ion, positron-ion, and electron-positron collisions. The relevant scattering matrix elements are calculated from one-plasmon exchange diagrams, with in-medium polarization tensors derived within hard-thermal-loop effective theory. Numerical results are obtained for matter composed of carbon nuclei. We find that the conductivity rises with temperature, following a power law sigma proportional to the 4th power of T in the semi-degenerate regime and sigma proportional to T in the nondegenerate regime, due to the intense creation of thermal electron-positron pairs and the resulting collisions among them. These results highlight the importance of including positrons in the transport properties of heated, dense astrophysical plasmas.
title Impact of positrons on electrical conductivity of hot and dense astrophysical plasma
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2512.01044