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Fluidity in domain walls in dilute He3−He4 films on graphite: Possible one-dimensional Fermi fluid and Dirac fermions in a helium film

Masashi Morishita*

  • Faculty of Pure and Applied Sciences, University of Tsukuba, Tsukuba, Ibaraki 305-8571, Japan

  • *morishita.masashi.ga@u.tsukuba.ac.jp

Phys. Rev. B 107, L020505 – Published 18 January, 2023

DOI: https://doi.org/10.1103/PhysRevB.107.L020505

Abstract

The heat capacity of a small number of He3 atoms dissolved in a submonolayer He4 film has been measured. The measured heat capacity is finite and suggests that He3 atoms are mobile in an areal density regime higher than that of the 3×3 phase, where He4 films are believed to be solid. At higher areal densities, the measured heat capacity is proportional to T2 and depends on the number of He3 atoms. These behaviors are anomalous to that of a two-dimensional Fermi fluid and cannot be explained by uniform melting of He4 films. One possible explanation for these anomalous behaviors is that helium atoms exhibit fluidity only inside the domain walls of the adsorption structure, and the dissolved He3 atoms gather in them and behave as a one-dimensional Fermi fluid or as Dirac fermions, depending on the structure of the domain walls. The behaviors of the measured heat capacity strongly suggest this possibility.

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