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Fermionic Superfluidity in Three- and Two-Dimensional Solutions of 3He in 4He

  • M. Yu Kagan
Chapter
Part of the Lecture Notes in Physics book series (LNP, volume 874)

Abstract

In this chapter, we will discuss fermionic superfluidity in the Fermi-Bose mixture (in the solution) of 3He in 4He both in three- and in two-dimensional case. We will present the foundations of the classical Bardeen-Baym-Pines theory [1], as well as Bashkin and Meyerovich [2] results for fermionic s-wave pairing in unpolarized 3He–4He mixtures in 3D case, as well as in 2D case for 3He submonolayers on Andreev levels [3] (which are formed on the free surface of superfluid 4He with vacuum) and on grafoil substrates [4, 5]. We also present the Fermi-gas approach to the p-wave fermionic superfluidity in 3He-subsystem based on Kohn and Luttinger [6–11] mechanism for the pairing of two 3He quasiparticles via polarization of the fermionic background.

Keywords

Superfluid Transition Fermionic Superfluidity Superfluid Transition Temperature Fermionic Background Andreev Level 
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.

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Copyright information

© Springer Science+Business Media Dordrecht 2013

Authors and Affiliations

  1. 1. Theoretical DepartmentP.L Kapitza Institute for Physical ProblemsMoscowRussia

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