Chirality inversion of Majorana edge modes in a Fu–Kane heterostructure
Fu and Kane have discovered that a topological insulator with induced s-wave superconductivity (gap Δ0, Fermi velocity v F, Fermi energy μ) supports chiral Majorana modes propagating on the surface along the edge with a magnetic insulator. We show that the direction of motion of the Majorana fermion...
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description | Fu and Kane have discovered that a topological insulator with induced s-wave superconductivity (gap Δ0, Fermi velocity v F, Fermi energy μ) supports chiral Majorana modes propagating on the surface along the edge with a magnetic insulator. We show that the direction of motion of the Majorana fermions can be inverted by the counterflow of supercurrent, when the Cooper pair momentum along the boundary exceeds \({{\Delta}}_{0}^{2}/\mu {v}_{\mathrm{F}}\). The chirality inversion is signaled by a doubling of the thermal conductance of a channel parallel to the supercurrent. Moreover, the inverted edge can transport a nonzero electrical current, carried by a Dirac mode that appears when the Majorana mode switches chirality. The chirality inversion is a unique signature of Majorana fermions in a spinful topological superconductor: it does not exist for spinless chiral p-wave pairing. |
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We show that the direction of motion of the Majorana fermions can be inverted by the counterflow of supercurrent, when the Cooper pair momentum along the boundary exceeds \({{\Delta}}_{0}^{2}/\mu {v}_{\mathrm{F}}\). The chirality inversion is signaled by a doubling of the thermal conductance of a channel parallel to the supercurrent. Moreover, the inverted edge can transport a nonzero electrical current, carried by a Dirac mode that appears when the Majorana mode switches chirality. The chirality inversion is a unique signature of Majorana fermions in a spinful topological superconductor: it does not exist for spinless chiral p-wave pairing.</description><identifier>ISSN: 1367-2630</identifier><identifier>EISSN: 1367-2630</identifier><identifier>DOI: 10.1088/1367-2630/ac265f</identifier><identifier>CODEN: NJOPFM</identifier><language>eng</language><publisher>Bristol: IOP Publishing</publisher><subject>chiral edge modes ; Chirality ; Cooper pairs ; Counterflow ; Doppler effect ; Doppler shift ; Electromagnetism ; Energy ; Fermions ; Heterostructures ; Magnetic fields ; Majorana edge modes ; P waves ; Physics ; Propagation modes ; quantum transport ; Superconductivity ; Switches ; Thermal conductivity ; Topological insulators ; Topological superconductors ; Velocity</subject><ispartof>New journal of physics, 2021-10, Vol.23 (10), p.103006</ispartof><rights>2021 The Author(s). Published by IOP Publishing Ltd on behalf of the Institute of Physics and Deutsche Physikalische Gesellschaft</rights><rights>2021. This work is published under https://creativecommons.org/licenses/by/4.0/ (the “License”). 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Phys</addtitle><description>Fu and Kane have discovered that a topological insulator with induced s-wave superconductivity (gap Δ0, Fermi velocity v F, Fermi energy μ) supports chiral Majorana modes propagating on the surface along the edge with a magnetic insulator. We show that the direction of motion of the Majorana fermions can be inverted by the counterflow of supercurrent, when the Cooper pair momentum along the boundary exceeds \({{\Delta}}_{0}^{2}/\mu {v}_{\mathrm{F}}\). The chirality inversion is signaled by a doubling of the thermal conductance of a channel parallel to the supercurrent. Moreover, the inverted edge can transport a nonzero electrical current, carried by a Dirac mode that appears when the Majorana mode switches chirality. The chirality inversion is a unique signature of Majorana fermions in a spinful topological superconductor: it does not exist for spinless chiral p-wave pairing.</description><subject>chiral edge modes</subject><subject>Chirality</subject><subject>Cooper pairs</subject><subject>Counterflow</subject><subject>Doppler effect</subject><subject>Doppler shift</subject><subject>Electromagnetism</subject><subject>Energy</subject><subject>Fermions</subject><subject>Heterostructures</subject><subject>Magnetic fields</subject><subject>Majorana edge modes</subject><subject>P waves</subject><subject>Physics</subject><subject>Propagation modes</subject><subject>quantum transport</subject><subject>Superconductivity</subject><subject>Switches</subject><subject>Thermal conductivity</subject><subject>Topological insulators</subject><subject>Topological superconductors</subject><subject>Velocity</subject><issn>1367-2630</issn><issn>1367-2630</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2021</creationdate><recordtype>article</recordtype><sourceid>O3W</sourceid><sourceid>ABUWG</sourceid><sourceid>AFKRA</sourceid><sourceid>AZQEC</sourceid><sourceid>BENPR</sourceid><sourceid>CCPQU</sourceid><sourceid>DWQXO</sourceid><sourceid>DOA</sourceid><recordid>eNp9UD1PwzAQjRBIlMLOGImFgdCznTjOiCoKFSAWmC3HObeO2jg4CVI3_gP_kF9CSlBhQEx3enofdy8ITglcEhBiQhhPI8oZTJSmPDF7wWgH7f_aD4OjpikBCBGUjoL5dGm9Wtl2E9rqFX1jXRU6Ez6o0nlVqRCLBYZrV2DTE0IVzrqPt_c7VWG4xBa9a1rf6bbzeBwcGLVq8OR7joPn2fXT9Da6f7yZT6_uIx0DbaMcaV4g5yoBYVLKtNFcxBlFyFMkIkZQmAnD8wRSYJQlgoiMaOC0MFwhZeNgPvgWTpWy9nat_EY6ZeUX4PxCKt9avUKps9wQiHUqchPTggtCEkVYFhvNqMa49zobvGrvXjpsWlm6zlf9-ZImArgQPNsmwsDS_buNR7NLJSC35cttu3LbrhzK7yUXg8S6-sfzH_r5H_SqrCVlg4oBcFkXhn0Cy7qSbg</recordid><startdate>20211001</startdate><enddate>20211001</enddate><creator>Donís Vela, A</creator><creator>Lemut, G</creator><creator>Pacholski, M J</creator><creator>Beenakker, C W J</creator><general>IOP Publishing</general><scope>O3W</scope><scope>TSCCA</scope><scope>AAYXX</scope><scope>CITATION</scope><scope>8FD</scope><scope>ABUWG</scope><scope>AFKRA</scope><scope>AZQEC</scope><scope>BENPR</scope><scope>CCPQU</scope><scope>DWQXO</scope><scope>H8D</scope><scope>L7M</scope><scope>PIMPY</scope><scope>PQEST</scope><scope>PQQKQ</scope><scope>PQUKI</scope><scope>PRINS</scope><scope>DOA</scope><orcidid>https://orcid.org/0000-0003-4748-4412</orcidid><orcidid>https://orcid.org/0000-0002-6946-0035</orcidid><orcidid>https://orcid.org/0000-0002-1627-7245</orcidid><orcidid>https://orcid.org/0000-0002-5245-3517</orcidid></search><sort><creationdate>20211001</creationdate><title>Chirality inversion of Majorana edge modes in a Fu–Kane heterostructure</title><author>Donís Vela, A ; 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subjects | chiral edge modes Chirality Cooper pairs Counterflow Doppler effect Doppler shift Electromagnetism Energy Fermions Heterostructures Magnetic fields Majorana edge modes P waves Physics Propagation modes quantum transport Superconductivity Switches Thermal conductivity Topological insulators Topological superconductors Velocity |
title | Chirality inversion of Majorana edge modes in a Fu–Kane heterostructure |
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