Helicity in superfluids
ORAL
Abstract
Ideal fluid flow conserves a special quantity known as helicity, in addition to energy, momentum and angular momentum. Helicity can be understood as a measure of the knottedness of vortex lines of the flow, providing an important geometric tool to study diverse physical systems such as turbulent fluids and plasmas. Since superfluids flow without resistance just like ideal (Euler) fluids, a natural question arises: Is there an extra conserved quantity akin to helicity in superfluids? We address the question of a "superfluid helicity" theoretically and examine its consequences in numerical simulations.
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Authors
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Hridesh Kedia
University of Chicago
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Dustin Kleckner
University of Chicago
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Davide Proment
University of East Anglia
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William T. M. Irvine
University of Chicago, James Franck Institute, University of Chicago