Vacuum tunneling of vortices in two-dimensional <sup>4</sup> He superfluid films

M M. J. Desrochers (Department of Physics and Astronomy) D D. J. J. Marchand (1Qubit) P P. C. E. Stamp (Department of Physics and Astronomy)

Abstract

At low temperature T we expect vacuum tunneling processes to occur in superfluid 4 He films. We distinguish between extrinsic processes, in which single vortices nucleate by tunneling off boundaries in the system, and intrinsic processes, in which vortex/anti-vortex pairs nucleate far from boundaries. It is crucial to incorporate the varying effective mass of the vortex in tunneling calculations. The intrinsic processes are the superfluid analogue of the Schwinger mechanism in quantum field theory; here they appear as a quantum phase transition at T = 0, driven by an external supercurrent. We calculate the tunneling rate for these processes, and describe a means of testing the predictions using a specific “vortex counting” experiment.

Article Details

Volume / Issue Vol. 122, Issue 36
Published September 09, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (3)

M

M. J. Desrochers

Department of Physics and Astronomy

D

D. J. J. Marchand

1Qubit

P

P. C. E. Stamp

Department of Physics and Astronomy