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Research PaperResearchia:200401.12005

Skyrmion formation in 1+1 dimensions with chemical potential

V. Sunil Kumar

Abstract

Formation of topological objects during phase transitions has been discussed extensively in literature. In all these discussions defects and anti-defects form with equal probabilities. In contrast, many physical situations, such as formation of baryons in relativistic heavy-ion collisions at present energies, flux tube formation in superconductors in the presence of external magnetic field, and formation of superfluid vortices in a rotating vessel, require a mechanism which can bias (say) defect...

Submitted: January 12, 2004Subjects: Physics; Condensed Matter

Description / Details

Formation of topological objects during phase transitions has been discussed extensively in literature. In all these discussions defects and anti-defects form with equal probabilities. In contrast, many physical situations, such as formation of baryons in relativistic heavy-ion collisions at present energies, flux tube formation in superconductors in the presence of external magnetic field, and formation of superfluid vortices in a rotating vessel, require a mechanism which can bias (say) defects over anti-defects. Such a bias can crucially affect defect-anti-defect correlations, apart from its effects on defect density. In this paper we initiate an investigation for the basic mechanism of biased formation of defects. For Skyrmions in 1+1 dimensions, we show that incorporation of a chemical potential term in the effective potential leads to a domain structure where order parameter is spatially varying. We show that this leads to biased formation of Skyrmions.


Source: arXiv:0401076v2 - http://arxiv.org/abs/hep-ph/0401076v2 PDF: https://arxiv.org/pdf/hep-ph/0401076v2 Original Link: http://arxiv.org/abs/hep-ph/0401076v2

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Date:
Jan 12, 2004
Topic:
Condensed Matter
Area:
Physics
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