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  Relativistic solution of Lordanskii problem in multi-constituent superfluid mechanics Context Sensitive Links

Prix, R., Carter, B., & Langlois, D. (2002). Relativistic solution of Lordanskii problem in multi-constituent superfluid mechanics Context Sensitive Links. In R. Huebener, N. Schopohl, & G. Volovik (Eds.), Vortices in Unconventional Superconductors and Superfluids (pp. 167-173). Berlin: Springer-Verlag.

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0101291v1.pdf (Preprint), 98KB
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 Creators:
Prix, Reinhard1, Author           
Carter, Brandon, Author
Langlois, David, Author
Affiliations:
1Observational Relativity and Cosmology, AEI-Hannover, MPI for Gravitational Physics, Max Planck Society, ou_24011              

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 Abstract: Flow past a line vortex in a simple perfect fluid or superfluid gives rise to a transverse Magnus force that is given by the well known Joukowski lift formula. The problem of generalising this to multiconstituent superfluid models has been controversial since it was originally posed by the work of Iordanski in the context of the Landau 2-constituent model for He-4 at finite temperature. The present work deals not just with this particular case but with the generic category of perfect multiconstituent models including the kind proposed for a mixture of He-4 and He-3 by Andreev and Bashkin. It is shown here (using a relativistic approach) that each constituent will provide a contribution proportional to the product of the corresponding momentum circulation integral with the associated asymptotic current density.

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 Dates: 2002
 Publication Status: Issued
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 Rev. Type: -
 Identifiers: eDoc: 379786
Other: arXiv:0101291
URI: http://www.springer.com/materials/book/978-3-540-42336-2
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Title: Vortices in Unconventional Superconductors and Superfluids
Source Genre: Book
 Creator(s):
Huebener, R.P., Editor
Schopohl, N., Editor
Volovik, G.E., Editor
Affiliations:
-
Publ. Info: Berlin : Springer-Verlag
Pages: - Volume / Issue: - Sequence Number: - Start / End Page: 167 - 173 Identifier: ISBN: 3-540-42336-2

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Title: Springer Series in Solid-State Sciences
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Pages: - Volume / Issue: 132 Sequence Number: - Start / End Page: - Identifier: ISBN: 3-540-42336-2