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首页> 外文期刊>Progress of Theoretical Physics >The theory of conserving approximations and the density functional theory in approximations for nuclear matter
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The theory of conserving approximations and the density functional theory in approximations for nuclear matter

机译:核物质的守恒近似理论和密度泛函理论

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摘要

Self-consistent relativistic approximations for nuclear matter are discussed in terms of the theory of conserving approximations and a self-consistent Green's function approach. Moreover, the nuclear density functional theory is explained in terms of the theory of conserving approximations. The analysis is applied to a relativistic field-theoretical model for nuclear matter, in order to construct self-consistent Dirac-Hartree-Fock and Dirac-Ring approximations that maintain the Hugenholtz-Van Hove theorem and Landau's hypothesis for quasiparticles. A self-consistent set of functional equations for self-energies is obtained by the stationary condition required by the theory of conserving approximations. The exact self-energy solutions are derived, and retardation corrections that maintain the Hugenholtz-Van Hove theorem and Landau's hypothesis for quasiparticles are generated explicitly in the self-energies. This approach is a direct method in order to construct self-consistent approximations for nuclear matter, and the results are applied to Fermi-liquid properties of nuclear matter and properties of neutron stars.
机译:根据守恒近似理论和自洽格林函数方法讨论了核物质的自洽相对论近似。此外,用保守近似理论解释了核密度泛函理论。将该分析应用于相对论的核物质场论模型,以构造自洽的Dirac-Hartree-Fock和Dirac-Ring近似值,以保持Hugenholtz-Van Hove定理和Landau的准粒子假设。通过守恒近似理论所需的平稳条件,获得了一组自洽的自能量函数方程。得出精确的自能量解,并在自能量中显式生成维持Hugenholtz-Van Hove定理和准粒子的Landau假设的延迟校正。这种方法是一种直接的方法,可以构造核子的自洽近似,并将结果应用于核子的费米液体性质和中子星的性质。

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