QUANTUM PHASE TRANSITIONS AND TOPOLOGICAL ORDERS IN SPIN CHAINS AND LADDERS

Dimerized antiferromagnetic spin-1/2 chains and ladders demonstrate quantum critical phase transition, the existence or absence of which is dependent on the dimerization and the dimerization pattern of the chain and the ladder, respectively. The gapped phases can not be distinguished by the conventi...

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Main Author: Pandey, Toplal
Language:en
Published: Laurentian University of Sudbury 2014
Subjects:
Online Access:https://zone.biblio.laurentian.ca/dspace/handle/10219/2142
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-OSUL.10219-21422014-04-01T03:44:43ZQUANTUM PHASE TRANSITIONS AND TOPOLOGICAL ORDERS IN SPIN CHAINS AND LADDERSPandey, ToplalQuantum phase transitionstopological ordersspin chainsladdersDimerized antiferromagnetic spin-1/2 chains and ladders demonstrate quantum critical phase transition, the existence or absence of which is dependent on the dimerization and the dimerization pattern of the chain and the ladder, respectively. The gapped phases can not be distinguished by the conventional Landau long-range order parameters. However, they possess non-local topological string order parameters which can be used to classify different phases. We utilize the self-consistent free fermionic approximation and some standard results for exactly solved models to analytically calculate the string order parameters of dimerized spin chains. As a complement parameter the gapped phases possess the topological number, called the winding number and they are characterized by different integer values of the winding number. In order to calculate the string order parameters and winding numbers in dimerized spin chains and two-leg ladders we use analytical methods such as the Jordan-Wigner transformation, mean-field approximation, duality transformations, and some standard results available for the exactly 1D solve models. It is shown that the winding number provides the complementary framework to the string order parameter to characterize the topological gapped phases.Laurentian University of Sudbury2014-03-17T14:19:31Z2014-03-17T14:19:31Z2014-03-17Thesishttps://zone.biblio.laurentian.ca/dspace/handle/10219/2142en
collection NDLTD
language en
sources NDLTD
topic Quantum phase transitions
topological orders
spin chains
ladders
spellingShingle Quantum phase transitions
topological orders
spin chains
ladders
Pandey, Toplal
QUANTUM PHASE TRANSITIONS AND TOPOLOGICAL ORDERS IN SPIN CHAINS AND LADDERS
description Dimerized antiferromagnetic spin-1/2 chains and ladders demonstrate quantum critical phase transition, the existence or absence of which is dependent on the dimerization and the dimerization pattern of the chain and the ladder, respectively. The gapped phases can not be distinguished by the conventional Landau long-range order parameters. However, they possess non-local topological string order parameters which can be used to classify different phases. We utilize the self-consistent free fermionic approximation and some standard results for exactly solved models to analytically calculate the string order parameters of dimerized spin chains. As a complement parameter the gapped phases possess the topological number, called the winding number and they are characterized by different integer values of the winding number. In order to calculate the string order parameters and winding numbers in dimerized spin chains and two-leg ladders we use analytical methods such as the Jordan-Wigner transformation, mean-field approximation, duality transformations, and some standard results available for the exactly 1D solve models. It is shown that the winding number provides the complementary framework to the string order parameter to characterize the topological gapped phases.
author Pandey, Toplal
author_facet Pandey, Toplal
author_sort Pandey, Toplal
title QUANTUM PHASE TRANSITIONS AND TOPOLOGICAL ORDERS IN SPIN CHAINS AND LADDERS
title_short QUANTUM PHASE TRANSITIONS AND TOPOLOGICAL ORDERS IN SPIN CHAINS AND LADDERS
title_full QUANTUM PHASE TRANSITIONS AND TOPOLOGICAL ORDERS IN SPIN CHAINS AND LADDERS
title_fullStr QUANTUM PHASE TRANSITIONS AND TOPOLOGICAL ORDERS IN SPIN CHAINS AND LADDERS
title_full_unstemmed QUANTUM PHASE TRANSITIONS AND TOPOLOGICAL ORDERS IN SPIN CHAINS AND LADDERS
title_sort quantum phase transitions and topological orders in spin chains and ladders
publisher Laurentian University of Sudbury
publishDate 2014
url https://zone.biblio.laurentian.ca/dspace/handle/10219/2142
work_keys_str_mv AT pandeytoplal quantumphasetransitionsandtopologicalordersinspinchainsandladders
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