Transport of bound quasiparticle states in a two-dimensional boundary superfluid

Author:

Autti SamuliORCID,Haley Richard P.ORCID,Jennings Asher,Pickett George R.ORCID,Poole Malcolm,Schanen Roch,Soldatov Arkady A.ORCID,Tsepelin ViktorORCID,Vonka JakubORCID,Zavjalov Vladislav V.,Zmeev Dmitry E.ORCID

Abstract

AbstractThe B phase of superfluid 3He can be cooled into the pure superfluid regime, where the thermal quasiparticle density is negligible. The bulk superfluid is surrounded by a quantum well at the boundaries of the container, confining a sea of quasiparticles with energies below that of those in the bulk. We can create a non-equilibrium distribution of these states within the quantum well and observe the dynamics of their motion indirectly. Here we show that the induced quasiparticle currents flow diffusively in the two-dimensional system. Combining this with a direct measurement of energy conservation, we conclude that the bulk superfluid 3He is effectively surrounded by an independent two-dimensional superfluid, which is isolated from the bulk superfluid but which readily interacts with mechanical probes. Our work shows that this two-dimensional quantum condensate and the dynamics of the surface bound states are experimentally accessible, opening the possibility of engineering two-dimensional quantum condensates of arbitrary topology.

Funder

RCUK | Engineering and Physical Sciences Research Council

RCUK | Science and Technology Facilities Council

EC | Horizon 2020 Framework Programme

Jenny ja Antti Wihurin Rahasto

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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