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Three-dimensional Majorana fermions in chiral superconductors

Author(s)
Kozii, Vladyslav; Venderbos, Joern Willem Friedrich; Fu, Liang
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Abstract
Using a systematic symmetry and topology analysis, we establish that three-dimensional chiral superconductors with strong spin-orbit coupling and odd-parity pairing generically host low-energy nodal quasiparticles that are spin-nondegenerate and realize Majorana fermions in three dimensions. By examining all types of chiral Cooper pairs with total angular momentum J formed by Bloch electrons with angular momentum j in crystals, we obtain a comprehensive classification of gapless Majorana quasiparticles in terms of energy-momentum relation and location on the Fermi surface. We show that the existence of bulk Majorana fermions in the vicinity of spin-selective point nodes is rooted in the nonunitary nature of chiral pairing in spin-orbit–coupled superconductors. We address experimental signatures of Majorana fermions and find that the nuclear magnetic resonance spin relaxation rate is significantly suppressed for nuclear spins polarized along the nodal direction as a consequence of the spin-selective Majorana nature of nodal quasiparticles. Furthermore, Majorana nodes in the bulk have nontrivial topology and imply the presence of Majorana bound states on the surface, which form arcs in momentum space. We conclude by proposing the heavy fermion superconductor PrOs4Sb12 and related materials as promising candidates for nonunitary chiral superconductors hosting three-dimensional Majorana fermions.
Date issued
2016-12
URI
http://hdl.handle.net/1721.1/109450
Department
Massachusetts Institute of Technology. Department of Physics
Journal
Science Advances
Publisher
American Association for the Advancement of Science (AAAS)
Citation
Kozii, V., J. W. F. Venderbos, and L. Fu. “Three-Dimensional Majorana Fermions in Chiral Superconductors.” Science Advances 2, no. 12 (December 7, 2016): e1601835–e1601835.
Version: Final published version
ISSN
2375-2548

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