The Possibility of Existence of an Energy Gap in the One-Particle Excitation Spectrum of He II

Abstract

Possibility for coexistence of a phonon and one-particle spectra in 4He at all temperatures including temperatures below the λ - point is shown. An approach developed to consider the problem of the weakly imperfect Bose gas results in the existence of a gap in the one-particle (one-atom) excitation spectrum below the transition point. Thus, the microscopic model of He II turns out to differ both from the model initially suggested by Landau and from the Bogolyubov model accepted at present. Analysis of the experimental data obtained by measuring enthalpy and the part of helium atoms condensed in the state with the momentum p=0 enabled to estimate the size of the gap. It turned out to be approximately equal to 0.31 K at zero temperature.

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