English

A microscopic approach to the response of $^{\bf 3}$He -$^{\bf 4}$He mixtures

Condensed Matter 2009-10-28 v1

Abstract

Correlated Basis Function perturbation theory is used to evaluate the zero temperature response S(q,ω)S(q,\omega) of 3^3He-4^4He mixtures for inelastic neutron scattering, at momentum transfers qq ranging from 1.11.1 to 1.7A˚11.7 \AA^{-1}. We adopt a Jastrow correlated ground state and a basis of correlated particle-hole and phonon states. We insert correlated one particle-one hole and one-phonon states to compute the second order response. The decay of the one-phonon states into two-phonon states is accounted for in boson-boson approximation. The full response is splitted into three partial components Sαβ(q,ω)S_{\alpha \beta}(q,\omega), each of them showing a particle-hole bump and a one phonon, delta shaped peak, which stays separated from the multiphonon background. The cross term S34(q,ω)S_{34}(q,\omega) results to be of comparable importance to S33(q,ω)S_{33}(q,\omega) in the particle-hole sector and to S44(q,ω)S_{44}(q,\omega) in the phonon one. Once the one-phonon peak has been convoluted with the experimental broadening, the computed scattering function is in semiquantitative agreement with recent experimental measurements.

Keywords

Cite

@article{arxiv.cond-mat/9512159,
  title  = {A microscopic approach to the response of $^{\bf 3}$He -$^{\bf 4}$He mixtures},
  author = {A. Fabrocini and L. Vichi and F. Mazzanti and A. Polls},
  journal= {arXiv preprint arXiv:cond-mat/9512159},
  year   = {2009}
}

Comments

26 pages, RevTex 3.0, 8 figures available upon request