Density fluctuations in liquid4He. Path integrals and maximum entropy
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[1] Richard Phillips Feynman,et al. Energy Spectrum of the Excitations in Liquid Helium , 1956 .
[2] Jarrell,et al. Low-temperature dynamics of the 2D spin-1/2 Heisenberg antiferromagnet: A quantum Monte Carlo study. , 1992, Physical review letters.
[3] D. Ceperley. Path integrals in the theory of condensed helium , 1995 .
[4] S. Lovesey. Condensed matter physics: Dynamic correlations , 1980 .
[5] Hanke,et al. Spectral properties of the one-dimensional Hubbard model. , 1993, Physical review letters.
[6] Griffin,et al. Zero sound and atomiclike excitations: The nature of phonons and rotons in liquid 4He. , 1990, Physical review letters.
[7] A. Woods,et al. Temperature dependence of S (Q,. omega. ) in superfluid /sup 4/He , 1978 .
[8] White. Spectral weight function for the two-dimensional Hubbard model. , 1991, Physical review. B, Condensed matter.
[9] R. A. Aziz,et al. Exchange-coulomb potential energy curves for He-He, and related physical properties , 1992 .
[10] H. Glyde,et al. Excitations in liquid and solid helium , 1995 .
[11] D. E. Galli,et al. Variational theory of rotons in superfluid4He , 1995 .
[12] Stirling,et al. Pressure dependence of elementary excitations in normal liquid helium-3. , 1987, Physical review letters.
[13] Talbot,et al. Temperature dependence of S(Q, omega ) in liquid 4He under pressure. , 1988, Physical review. B, Condensed matter.
[14] Pandharipande,et al. Theoretical studies of the dynamic structure function of liquid 4He. , 1986, Physical review. B, Condensed matter.
[15] Emilio Gallicchio,et al. The absorption spectrum of the solvated electron in fluid helium by maximum entropy inversion of imaginary time correlation functions from path integral Monte Carlo simulations , 1994 .
[16] G. Placzek. The Scattering of Neutrons by Systems of Heavy Nuclei , 1952 .
[17] P. Nozières,et al. Structure of the perturbation expansion for the bose liquid at zero temperature , 1964 .
[18] Jarrell,et al. Spectral densities of the symmetric Anderson model. , 1990, Physical review letters.
[19] Richard Phillips Feynman,et al. Atomic Theory of the Two-Fluid Model of Liquid Helium , 1954 .
[20] Glyde. Density and quasiparticle excitations in liquid 4He. , 1992, Physical review. B, Condensed matter.
[21] E. Manousakis,et al. Theoretical studies of elementary excitations in liquid 4 He , 1984 .
[22] White,et al. One-electron spectral weight of the doped two-dimensional Hubbard model. , 1994, Physical review letters.
[23] Pollock,et al. Path-integral computation of the low-temperature properties of liquid 4He. , 1986, Physical review letters.
[24] P. Hohenberg,et al. Superfluid Dynamics in the Hydrodynamic ( ω τ ≪ 1 ) and Collisionless ( ω τ ≫ 1 ) Domains , 1964 .
[25] J. A. Donnelly,et al. Specific heat and dispersion curve for helium II , 1981 .
[26] K. H. Andersen,et al. Neutron inelastic scattering from superfluid 4He beyond the roton minimum , 1991 .
[27] Vitiello,et al. Rotons and properties of superfluid 4He. , 1992, Physical review letters.
[28] N. M. Hugenholtz,et al. Ground-State Energy and Excitation Spectrum of a System of Interacting Bosons , 1959 .
[29] Pollock,et al. Path-integral computation of superfluid densities. , 1987, Physical review. B, Condensed matter.
[30] M. Caffarel,et al. A Bayesian analysis of Green's function Monte Carlo correlation functions , 1992 .
[31] Siegmund Brandt,et al. Statistical and Computational Methods in Data Analysis , 1971 .
[32] D. Ceperley,et al. Simulation of quantum many-body systems by path-integral methods , 1984 .