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Competing Phases in Correlated Electron Systems with Frustration

Peyman Sahebsara

ISBN 10: 3659411590 / ISBN 13: 9783659411595
Published by LAP Lambert Academic Publishing
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Paperback. 152 pages. Dimensions: 8.7in. x 5.9in. x 0.3in.The variational cluster approximation, based on the self-energy functional theory for electrons, is one of the quantum cluster methods, we introduced to investigate the broken symmetry states of strongly correlated systems. Layered organic compounds, in which dimers of organic molecules form an anisotropic triangular lattice, are among materials that show frustration. We discuss the two-dimensional one-band Hubbard model used for studying these compounds. A comparison of the normal state and Nel antiferromagnetic ordered phase energies, enables us to conclude that this order is dominant at large values of electron interactions. Moreover, various pairings of d-wave superconductivity is discussed in relation with cluster and lattice point group symmetries. No evidence of homogeneous coexistence of antiferromagnetic and d-wave superconducting phases is found. We also investigate a spiral magnetic order on the isotropic triangular lattice, where no Nel antiferromagnetic order is found. Density of states points out that the system is metallic at weak coupling. An insulating phase, without long-range order is found at stronger coupling, which we conjecture to be a spin liquid phase. This item ships from multiple locations. Your book may arrive from Roseburg,OR, La Vergne,TN. Bookseller Inventory # 9783659411595

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Bibliographic Details

Title: Competing Phases in Correlated Electron ...

Publisher: LAP Lambert Academic Publishing

Binding: Paperback

Book Condition:New

Book Type: Paperback

About this title

Synopsis:

The variational cluster approximation, based on the self-energy functional theory for electrons, is one of the quantum cluster methods, we introduced to investigate the broken symmetry states of strongly correlated systems. Layered organic compounds, in which dimers of organic molecules form an anisotropic triangular lattice, are among materials that show frustration. We discuss the two-dimensional one-band Hubbard model used for studying these compounds. A comparison of the normal state and Néel antiferromagnetic ordered phase energies, enables us to conclude that this order is dominant at large values of electron interactions. Moreover, various pairings of d-wave superconductivity is discussed in relation with cluster and lattice point group symmetries. No evidence of homogeneous coexistence of antiferromagnetic and d-wave superconducting phases is found. We also investigate a spiral magnetic order on the isotropic triangular lattice, where no Néel antiferromagnetic order is found. Density of states points out that the system is metallic at weak coupling. An insulating phase, without long-range order is found at stronger coupling, which we conjecture to be a spin liquid phase.

About the Author:

Dr. Peyman Sahebsara obtained his PhD degree in 2008 from Université de Sherbrooke, Québec, Canada. His field of research is condensed matter physics, with a major focus on quantum many body physics and strongly correlated electron systems. He is currently an assistant professor in physics department at Isfahan University of Technology.

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