Vacuum Effects and Compressional Properties of Nuclear Matter in Cutoff Field Theory

The compressional properties of nuclear matter, including vacuum effects, are studied in the cutoff field theory. In the Hartree approximation, the low-energy effective Lagrangian is derived in the framework of renormalization group methods. The coefficients are determined in such a way that the phy...

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Veröffentlicht in:Progress of theoretical and experimental physics 1997-11, Vol.98 (5), p.1123-1137
Hauptverfasser: Kouno, Hiroaki, Sakamoto, Katsuaki, Iwasaki, Yoshitaka, Noda, Nobuo, Mitsumori, Tomohiro, Koide, Kazuharu, Hasegawa, Akira, Nakano, Masahiro
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container_end_page 1137
container_issue 5
container_start_page 1123
container_title Progress of theoretical and experimental physics
container_volume 98
creator Kouno, Hiroaki
Sakamoto, Katsuaki
Iwasaki, Yoshitaka
Noda, Nobuo
Mitsumori, Tomohiro
Koide, Kazuharu
Hasegawa, Akira
Nakano, Masahiro
description The compressional properties of nuclear matter, including vacuum effects, are studied in the cutoff field theory. In the Hartree approximation, the low-energy effective Lagrangian is derived in the framework of renormalization group methods. The coefficients are determined in such a way that the physical results depend little on the value of the cutoff which is conveniently introduced into the theory. It is shown that, to reproduce the empirical data of the nucleus incompressibility, it is favorable for the incompressibility of nuclear matter to be 250 ∼ 350 MeV.
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title Vacuum Effects and Compressional Properties of Nuclear Matter in Cutoff Field Theory
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