Exotic Phases In Geometrically Frustrated Quantum Magnets

Quantum magnetic materials provide pathways to exotic spin-disordered phases. We study two broad classes of quantum spin systems and their ground states. The first class is that of spin-dimer systems, which form valence-bond-solid states. In such systems, competition between interactions among the d...

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Main Author: Dodds, Tyler
Other Authors: Kim, Yong Baek
Language:en_ca
Published: 2013
Subjects:
Online Access:http://hdl.handle.net/1807/43542
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spelling ndltd-TORONTO-oai-tspace.library.utoronto.ca-1807-435422014-01-09T04:15:10ZExotic Phases In Geometrically Frustrated Quantum MagnetsDodds, TylerPhysicsCondensed MatterQuantum MagnetismSpin LiquidsValence Bond Solid0611Quantum magnetic materials provide pathways to exotic spin-disordered phases. We study two broad classes of quantum spin systems and their ground states. The first class is that of spin-dimer systems, which form valence-bond-solid states. In such systems, competition between interactions among the dimers can lead to interesting magnetization behaviour. We explain the magnetization of Ba3Cr2O8 as a Bose-Einstein condensate of spin-carrying excitations. Furthermore, we investigate possible dimerized and nearby magnetically ordered states in the Shastry-Sutherland compound (CuCl)LaNb2O7. The second class of spin systems feature geometric frustration, which may stabilize spin-liquid states without any order or particular dimerization. We argue the proximity of the face-centred-cubic double perovskite La2LiMoO6 to such a phase, to explain its lack of long-range order. We argue for the coexistence of such a state, along with spiral magnetic order, to explain the anomalous thermodynamic measurements in the spin-density-wave phase of powder samples of Volborthite, a distorted kagome-lattice spin system. Finally, we study spin liquid phases that have spin correlations consistent with those found from inelastic neutron scattering of the disordered kagome-lattice material Herbertsmithite. We predict electron spin resonance absorption lineshapes associated with these phases.Kim, Yong Baek2013-112014-01-08T21:09:38ZNO_RESTRICTION2014-01-08T21:09:38Z2014-01-08Thesishttp://hdl.handle.net/1807/43542en_ca
collection NDLTD
language en_ca
sources NDLTD
topic Physics
Condensed Matter
Quantum Magnetism
Spin Liquids
Valence Bond Solid
0611
spellingShingle Physics
Condensed Matter
Quantum Magnetism
Spin Liquids
Valence Bond Solid
0611
Dodds, Tyler
Exotic Phases In Geometrically Frustrated Quantum Magnets
description Quantum magnetic materials provide pathways to exotic spin-disordered phases. We study two broad classes of quantum spin systems and their ground states. The first class is that of spin-dimer systems, which form valence-bond-solid states. In such systems, competition between interactions among the dimers can lead to interesting magnetization behaviour. We explain the magnetization of Ba3Cr2O8 as a Bose-Einstein condensate of spin-carrying excitations. Furthermore, we investigate possible dimerized and nearby magnetically ordered states in the Shastry-Sutherland compound (CuCl)LaNb2O7. The second class of spin systems feature geometric frustration, which may stabilize spin-liquid states without any order or particular dimerization. We argue the proximity of the face-centred-cubic double perovskite La2LiMoO6 to such a phase, to explain its lack of long-range order. We argue for the coexistence of such a state, along with spiral magnetic order, to explain the anomalous thermodynamic measurements in the spin-density-wave phase of powder samples of Volborthite, a distorted kagome-lattice spin system. Finally, we study spin liquid phases that have spin correlations consistent with those found from inelastic neutron scattering of the disordered kagome-lattice material Herbertsmithite. We predict electron spin resonance absorption lineshapes associated with these phases.
author2 Kim, Yong Baek
author_facet Kim, Yong Baek
Dodds, Tyler
author Dodds, Tyler
author_sort Dodds, Tyler
title Exotic Phases In Geometrically Frustrated Quantum Magnets
title_short Exotic Phases In Geometrically Frustrated Quantum Magnets
title_full Exotic Phases In Geometrically Frustrated Quantum Magnets
title_fullStr Exotic Phases In Geometrically Frustrated Quantum Magnets
title_full_unstemmed Exotic Phases In Geometrically Frustrated Quantum Magnets
title_sort exotic phases in geometrically frustrated quantum magnets
publishDate 2013
url http://hdl.handle.net/1807/43542
work_keys_str_mv AT doddstyler exoticphasesingeometricallyfrustratedquantummagnets
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