Instability of Interfaces in the Antiferromagnetic XXZ Chain at Zero Temperature |
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Authors: | Nilanjana Datta Tom Kennedy |
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Affiliation: | (1) Statistical Laboratory, Centre for Mathematical Sciences, University of Cambridge, Wilberforce Road, Cambridge CB30WB, U.K. E-mail: n.datta@statslab.cam.ac.uk, GB;(2) Department of Mathematics, University of Arizona, Tucson, AZ 85721, USA. E-mail: tgk@math.arizona.edu, US |
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Abstract: | For the antiferromagnetic, highly anisotropic XZ and XXZ quantum spin chains, we impose periodic boundary conditions on chains with an odd number of sites to force an interface (or kink) into the chain. We prove that the energy of the interface depends on the momentum of the state. This shows that at zero temperature the interface in such chains is not stable. This is in contrast to the ferromagnetic XXZ chain for which the existence of localized interface ground states has been proven for any amount of anisotropy in the Ising-like regime. Received: 15 August 2002 / Accepted: 8 January 2003 Published online: 14 April 2003 RID="⋆" ID="⋆" ? Copyright rests with the authors. Reproduction of the entire article for non-commercial purposes is permitted. Communicated by M. Aizenman |
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