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2013 | OriginalPaper | Chapter

8. Transport Properties in a Model of Quantum Fluids and Solids

Author : Christophe Josserand

Published in: From Hamiltonian Chaos to Complex Systems

Publisher: Springer New York

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Abstract

We discuss the general transport properties of the non-linear Schrödinger equation in the context of quantum fluid models. In particular, we will discuss two striking behaviors described within this model: the nucleation of quantized vortices and the non-classical rotational inertia.

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Footnotes
1
Note that a Galilean boost with a speed v changes the energy \(H^{\prime} = H + \mathbf{P} \cdot \mathbf{v} + \frac{1} {2}mN{v}^{2}\) and the momentum P  = P + mN v as usually in classical mechanics.
 
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Metadata
Title
Transport Properties in a Model of Quantum Fluids and Solids
Author
Christophe Josserand
Copyright Year
2013
Publisher
Springer New York
DOI
https://doi.org/10.1007/978-1-4614-6962-9_8