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Shear flow and Kelvin-Helmholtz instability in superfluids

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arxiv cond-mat/0111343 v2 pith:BMXRFVHA submitted 2001-11-19 cond-mat gr-qchep-phphysics.flu-dynquant-ph

Shear flow and Kelvin-Helmholtz instability in superfluids

classification cond-mat gr-qchep-phphysics.flu-dynquant-ph
keywords instabilityflowinterfacekelvin-helmholtzphasesshearstatesuperfluids
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The first realization of instabilities in the shear flow between two superfluids is examined. The interface separating the A and B phases of superfluid He-3 is magnetically stabilized. With uniform rotation we create a state with discontinuous tangential velocities at the interface, supported by the difference in quantized vorticity in the two phases. This state remains stable and nondissipative to high relative velocities, but finally undergoes an instability when an interfacial mode is excited and some vortices cross the phase boundary. The measured properties of the instability are consistent with a modified Kelvin-Helmholtz theory.

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