A Self-Consistent Theory of Response Function and Effective Potential : A General Theory of Density Fluctuations in Classical and Quantum Liquids
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概要
- 論文の詳細を見る
A theory of many-particle systems using the memory function method is formulated by expressing a response function in terms of that of a reference system and an effective potential. An exact formal expression for the effective potential is thereby obtained in terms of an interaction-part of a reduced second order memory function (IRSMF) and the second and fourth frequency moments of a spectral function of a canonical self-correlation function. Two regimes, statistical and collisionless, are introduced for the IRSMF to discuss the approximate properties of the effective potential. As an example of tractable schemes to determine the effective potential in a self-consistent manner, a standard shor-time or high-frequency approximation is employed to take the IRSMF to be Gaussian. The formal theory is illustrated by developing a general theory of density fluctuations in classical and quantum liquids from a unified and systematic point of view. A spectral function of a density response function is expressed in terms of various characteristic frequencies describing single-particle and collective excitations, kinematical or Landau-type and dynamical or collisional dempings, time-decaying of the IRSMF, etc. A brief study is made on collective modes in liquid He^4 and anharmonic solids with particular attention paid to the properties of the effective potential.
- 理論物理学刊行会の論文
- 1978-11-25
著者
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YOSHIDA Fukuo
Research Reactor Institute, Kyoto University
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Yoshida Fukuo
Research Reactor Institute Kyoto University
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Takeno Shozo
Department Of General Education Osaka Institute Of Technology
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Yoshida Fukuo
Reseaerch Reactor Institute Kyoyo University
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Takeno Shozo
Department of Physics, Faculty of Engineering and Design Kyoto Institute of Technology
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