Momentum distribution of liquid helium
Saverio Moroni, Gaetano Senatore, Stefano Fantoni
Abstract
We have obtained the one--body density matrix and the momentum distribution n(p) of liquid 4He at T=3D0oK from Diffusion Monte Carlo (DMC) simulations, using trial functions optimized via the Euler Monte Carlo (EMC) method. We find a condensate fraction smaller than in previous calculations. Though we do not explicitly include long--range correlations in our calculations, we get a momentum distribution at long wavelength which is compatible with the presence of long--range correlations in the exact wave function. We have also studied 3He, using fixed--node DMC, with nodes and trial functions provided by the EMC. In particular, we analyze the momentum distribution n(p) with respect to the discontinuity Z as well as the singular behavior, at the Fermi surface. We also show that an approximate factorization of the one-body density matrix ρ(r) ρ0(r)ρB(r) holds, with ρ0(r) and ρB(r) respectively the density matrix of the ideal Fermi gas and the density matrix of a Bose 3He.
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