Matches in SemOpenAlex for { <https://semopenalex.org/work/W2078232519> ?p ?o ?g. }
- W2078232519 abstract "Nodal noncentrosymmetric superconductors have topologically nontrivial properties manifested by protected zero-energy surface states. Specifically, it was recently found that zero-energy surface flat bands of topological origin appear at their surface. We show that the presence of certain inversion-type lattice symmetries can give rise to additional topological features of the gap nodes, resulting in surface states forming one-dimensional arcs connecting the projections of two nodal rings. In addition, we demonstrate that Majorana surface states can appear at time-reversal-invariant momenta of the surface Brillouin zone, even when the system is not fully gapped in the bulk. Within a continuum theory we derive the topological invariants that protect these different types of zero-energy surface states. We independently derive general conditions for the existence of zero-energy surface bound states using the complementary quasiclassical scattering theory, explicitly taking into account the effects of spin-orbit splitting of the bands. We compute surface bound-state spectra for various crystal point-group symmetries and orbital-angular-momentum pairing states. Finally, we examine the signatures of the arc surface states and of the zero-energy surface flat bands in tunneling-conductance spectra and discuss how topological phase transitions in noncentrosymmetric superconductors could be observed in experiments." @default.
- W2078232519 created "2016-06-24" @default.
- W2078232519 creator A5011720023 @default.
- W2078232519 creator A5022813763 @default.
- W2078232519 creator A5022952463 @default.
- W2078232519 date "2012-01-11" @default.
- W2078232519 modified "2023-09-25" @default.
- W2078232519 title "Types of topological surface states in nodal noncentrosymmetric superconductors" @default.
- W2078232519 cites W1486122429 @default.
- W2078232519 cites W1493943450 @default.
- W2078232519 cites W1501955150 @default.
- W2078232519 cites W1528946541 @default.
- W2078232519 cites W1535735865 @default.
- W2078232519 cites W1538825449 @default.
- W2078232519 cites W1642067022 @default.
- W2078232519 cites W1657661058 @default.
- W2078232519 cites W1677435873 @default.
- W2078232519 cites W1970663662 @default.
- W2078232519 cites W1972912683 @default.
- W2078232519 cites W1974447177 @default.
- W2078232519 cites W1977967750 @default.
- W2078232519 cites W1978872186 @default.
- W2078232519 cites W1979650916 @default.
- W2078232519 cites W1984518889 @default.
- W2078232519 cites W1989116198 @default.
- W2078232519 cites W1994864975 @default.
- W2078232519 cites W1995163481 @default.
- W2078232519 cites W2003397144 @default.
- W2078232519 cites W2005950841 @default.
- W2078232519 cites W2008150673 @default.
- W2078232519 cites W2008761774 @default.
- W2078232519 cites W2009372212 @default.
- W2078232519 cites W2011449540 @default.
- W2078232519 cites W2012329728 @default.
- W2078232519 cites W2015471648 @default.
- W2078232519 cites W2017853305 @default.
- W2078232519 cites W2019917388 @default.
- W2078232519 cites W2020332193 @default.
- W2078232519 cites W2023201207 @default.
- W2078232519 cites W2033132845 @default.
- W2078232519 cites W2037346087 @default.
- W2078232519 cites W2040432016 @default.
- W2078232519 cites W2043429113 @default.
- W2078232519 cites W2044065017 @default.
- W2078232519 cites W2046004949 @default.
- W2078232519 cites W2050705033 @default.
- W2078232519 cites W2053170835 @default.
- W2078232519 cites W2054753178 @default.
- W2078232519 cites W2058239461 @default.
- W2078232519 cites W2063489151 @default.
- W2078232519 cites W2073047667 @default.
- W2078232519 cites W2087005733 @default.
- W2078232519 cites W2087890138 @default.
- W2078232519 cites W2088198211 @default.
- W2078232519 cites W2102074887 @default.
- W2078232519 cites W2144443258 @default.
- W2078232519 cites W2150786102 @default.
- W2078232519 cites W2167153732 @default.
- W2078232519 cites W2178887848 @default.
- W2078232519 cites W2290163007 @default.
- W2078232519 cites W2501309820 @default.
- W2078232519 cites W3022771642 @default.
- W2078232519 cites W3099968882 @default.
- W2078232519 cites W3100400587 @default.
- W2078232519 cites W3102762501 @default.
- W2078232519 cites W3104986786 @default.
- W2078232519 cites W3145021469 @default.
- W2078232519 cites W3146561530 @default.
- W2078232519 cites W4301652612 @default.
- W2078232519 doi "https://doi.org/10.1103/physrevb.85.024522" @default.
- W2078232519 hasPublicationYear "2012" @default.
- W2078232519 type Work @default.
- W2078232519 sameAs 2078232519 @default.
- W2078232519 citedByCount "131" @default.
- W2078232519 countsByYear W20782325192012 @default.
- W2078232519 countsByYear W20782325192013 @default.
- W2078232519 countsByYear W20782325192014 @default.
- W2078232519 countsByYear W20782325192015 @default.
- W2078232519 countsByYear W20782325192016 @default.
- W2078232519 countsByYear W20782325192017 @default.
- W2078232519 countsByYear W20782325192018 @default.
- W2078232519 countsByYear W20782325192019 @default.
- W2078232519 countsByYear W20782325192020 @default.
- W2078232519 countsByYear W20782325192021 @default.
- W2078232519 countsByYear W20782325192022 @default.
- W2078232519 countsByYear W20782325192023 @default.
- W2078232519 crossrefType "journal-article" @default.
- W2078232519 hasAuthorship W2078232519A5011720023 @default.
- W2078232519 hasAuthorship W2078232519A5022813763 @default.
- W2078232519 hasAuthorship W2078232519A5022952463 @default.
- W2078232519 hasBestOaLocation W20782325192 @default.
- W2078232519 hasConcept C114614502 @default.
- W2078232519 hasConcept C121332964 @default.
- W2078232519 hasConcept C14103023 @default.
- W2078232519 hasConcept C16291881 @default.
- W2078232519 hasConcept C174084160 @default.
- W2078232519 hasConcept C184720557 @default.
- W2078232519 hasConcept C2524010 @default.
- W2078232519 hasConcept C26873012 @default.
- W2078232519 hasConcept C2776799497 @default.