Successive Majorana topological transitions driven by a magnetic field in the Kitaev model
We study quantum phase transitions in the honeycomb Kitaev model under a magnetic field, focusing on the topological nature of Majorana fermion excitations. We find a gapless phase between the low-field gapless quantum spin liquid and the high-field gapped forced-ferromagnetic state for the antiferr...
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description | We study quantum phase transitions in the honeycomb Kitaev model under a magnetic field, focusing on the topological nature of Majorana fermion excitations. We find a gapless phase between the low-field gapless quantum spin liquid and the high-field gapped forced-ferromagnetic state for the antiferromagnetic Kitaev model in the [001] field by using the Majorana mean-field theory, in conjunction with the exact diagonalization and the spin-wave theory supporting the validity of this approach. The transition between the two gapless phases is driven by a topological change of the Majorana spectrum-line node formation interconnecting two Majorana cones. The peculiar change of the Majorana band topology is rationalized by a sign change of the effective Kitaev coupling by the magnetic field, which does not occur in the ferromagnetic Kitaev case. Upon tilting the magnetic field away from [001], the two gapless phases become gapped and topologically nontrivial, characterized by nonzero Chern numbers with different signs. The sign change of the Chern number leads to a reversal of the thermal edge current in the half-quantized thermal Hall effect. |
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We find a gapless phase between the low-field gapless quantum spin liquid and the high-field gapped forced-ferromagnetic state for the antiferromagnetic Kitaev model in the [001] field by using the Majorana mean-field theory, in conjunction with the exact diagonalization and the spin-wave theory supporting the validity of this approach. The transition between the two gapless phases is driven by a topological change of the Majorana spectrum-line node formation interconnecting two Majorana cones. The peculiar change of the Majorana band topology is rationalized by a sign change of the effective Kitaev coupling by the magnetic field, which does not occur in the ferromagnetic Kitaev case. Upon tilting the magnetic field away from [001], the two gapless phases become gapped and topologically nontrivial, characterized by nonzero Chern numbers with different signs. The sign change of the Chern number leads to a reversal of the thermal edge current in the half-quantized thermal Hall effect.</description><identifier>ISSN: 2469-9950</identifier><identifier>EISSN: 2469-9969</identifier><identifier>DOI: 10.1103/PhysRevB.98.060416</identifier><language>eng</language><publisher>College Park: American Physical Society</publisher><subject>Antiferromagnetism ; Cones ; Ferromagnetism ; Hall effect ; Honeycomb construction ; Magnetic fields ; Magnetism ; Mean field theory ; Phase transitions ; Spin liquid ; Topology</subject><ispartof>Physical review. 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Upon tilting the magnetic field away from [001], the two gapless phases become gapped and topologically nontrivial, characterized by nonzero Chern numbers with different signs. The sign change of the Chern number leads to a reversal of the thermal edge current in the half-quantized thermal Hall effect.</description><subject>Antiferromagnetism</subject><subject>Cones</subject><subject>Ferromagnetism</subject><subject>Hall effect</subject><subject>Honeycomb construction</subject><subject>Magnetic fields</subject><subject>Magnetism</subject><subject>Mean field theory</subject><subject>Phase transitions</subject><subject>Spin liquid</subject><subject>Topology</subject><issn>2469-9950</issn><issn>2469-9969</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2018</creationdate><recordtype>article</recordtype><recordid>eNo9kNtKAzEQhoMoWGpfwKuA11snx91cavGEFcXDjTchu5u0KdtNTdJC396VqjAww8_HDPMhdE5gSgiwy5flPr3a3fVUVVOQwIk8QiPKpSqUkur4fxZwiiYprQCASFAlqBH6fNs2jU3J7yx-MqsQTW9wDpvQhYVvTIfzkCSffegTbuOA9bjeY4PXZtHb7BvsvO1a7HuclxY_-mzsDq9Da7szdOJMl-zkt4_Rx-3N--y-mD_fPcyu5kXDOMmFUDUTSlha1qaUtK0Y1KaqKTBhHTjHuGC0pJZCTYBWTg6lKsWFJLQaHmNjdHHYu4nha2tT1quwjf1wUlNCpSKc8HKg6IFqYkgpWqc30a9N3GsC-kej_tOoVaUPGtk3sphmew</recordid><startdate>20180830</startdate><enddate>20180830</enddate><creator>Nasu, Joji</creator><creator>Kato, Yasuyuki</creator><creator>Kamiya, Yoshitomo</creator><creator>Motome, Yukitoshi</creator><general>American Physical Society</general><scope>AAYXX</scope><scope>CITATION</scope><scope>7SR</scope><scope>7U5</scope><scope>8BQ</scope><scope>8FD</scope><scope>H8D</scope><scope>JG9</scope><scope>L7M</scope></search><sort><creationdate>20180830</creationdate><title>Successive Majorana topological transitions driven by a magnetic field in the Kitaev model</title><author>Nasu, Joji ; Kato, Yasuyuki ; Kamiya, Yoshitomo ; Motome, Yukitoshi</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c341t-59b3595e27ba762d830ba8b2035ef0ff3453272e20b1028f68f69894561284693</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2018</creationdate><topic>Antiferromagnetism</topic><topic>Cones</topic><topic>Ferromagnetism</topic><topic>Hall effect</topic><topic>Honeycomb construction</topic><topic>Magnetic fields</topic><topic>Magnetism</topic><topic>Mean field theory</topic><topic>Phase transitions</topic><topic>Spin liquid</topic><topic>Topology</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Nasu, Joji</creatorcontrib><creatorcontrib>Kato, Yasuyuki</creatorcontrib><creatorcontrib>Kamiya, Yoshitomo</creatorcontrib><creatorcontrib>Motome, Yukitoshi</creatorcontrib><collection>CrossRef</collection><collection>Engineered Materials Abstracts</collection><collection>Solid State and Superconductivity Abstracts</collection><collection>METADEX</collection><collection>Technology Research Database</collection><collection>Aerospace Database</collection><collection>Materials Research Database</collection><collection>Advanced Technologies Database with Aerospace</collection><jtitle>Physical review. B</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Nasu, Joji</au><au>Kato, Yasuyuki</au><au>Kamiya, Yoshitomo</au><au>Motome, Yukitoshi</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Successive Majorana topological transitions driven by a magnetic field in the Kitaev model</atitle><jtitle>Physical review. B</jtitle><date>2018-08-30</date><risdate>2018</risdate><volume>98</volume><issue>6</issue><spage>060416</spage><pages>060416-</pages><artnum>060416</artnum><issn>2469-9950</issn><eissn>2469-9969</eissn><abstract>We study quantum phase transitions in the honeycomb Kitaev model under a magnetic field, focusing on the topological nature of Majorana fermion excitations. We find a gapless phase between the low-field gapless quantum spin liquid and the high-field gapped forced-ferromagnetic state for the antiferromagnetic Kitaev model in the [001] field by using the Majorana mean-field theory, in conjunction with the exact diagonalization and the spin-wave theory supporting the validity of this approach. The transition between the two gapless phases is driven by a topological change of the Majorana spectrum-line node formation interconnecting two Majorana cones. The peculiar change of the Majorana band topology is rationalized by a sign change of the effective Kitaev coupling by the magnetic field, which does not occur in the ferromagnetic Kitaev case. Upon tilting the magnetic field away from [001], the two gapless phases become gapped and topologically nontrivial, characterized by nonzero Chern numbers with different signs. 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subjects | Antiferromagnetism Cones Ferromagnetism Hall effect Honeycomb construction Magnetic fields Magnetism Mean field theory Phase transitions Spin liquid Topology |
title | Successive Majorana topological transitions driven by a magnetic field in the Kitaev model |
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