Matches in SemOpenAlex for { <https://semopenalex.org/work/W2279341257> ?p ?o ?g. }
- W2279341257 abstract "We consider theoretically surface plasmon polaritons in Weyl semimetals. These materials contain pairs of band touching points---Weyl nodes---with a chiral topological charge, which induces an optical anisotropy and anomalous transport through the chiral anomaly. We show that these effects, which are not present in ordinary metals, have a direct fundamental manifestation in the surface plasmon dispersion. The retarded Weyl surface plasmon dispersion depends on the separation of the Weyl nodes in energy and momentum space. For Weyl semimetals with broken time-reversal symmetry, the distance between the nodes acts as an effective applied magnetic field in momentum space, and the Weyl surface plasmon polariton dispersion is strikingly similar to magnetoplasmons in ordinary metals. In particular, this implies the existence of nonreciprocal surface modes. In addition, we obtain the nonretarded Weyl magnetoplasmon modes, which acquire an additional longitudinal magnetic field dependence. These predicted surface plasmon results are observable manifestations of the chiral anomaly in Weyl semimetals and might have technological applications." @default.
- W2279341257 created "2016-06-24" @default.
- W2279341257 creator A5058862418 @default.
- W2279341257 creator A5060980314 @default.
- W2279341257 date "2016-06-09" @default.
- W2279341257 modified "2023-10-13" @default.
- W2279341257 title "Surface plasmon polaritons in topological Weyl semimetals" @default.
- W2279341257 cites W1538696681 @default.
- W2279341257 cites W1558091731 @default.
- W2279341257 cites W1567637531 @default.
- W2279341257 cites W1575638185 @default.
- W2279341257 cites W1638792950 @default.
- W2279341257 cites W1769612684 @default.
- W2279341257 cites W1780214118 @default.
- W2279341257 cites W1880666908 @default.
- W2279341257 cites W1900427633 @default.
- W2279341257 cites W1946521755 @default.
- W2279341257 cites W1946992908 @default.
- W2279341257 cites W1963956003 @default.
- W2279341257 cites W1975736223 @default.
- W2279341257 cites W1976741989 @default.
- W2279341257 cites W1979772196 @default.
- W2279341257 cites W1983330804 @default.
- W2279341257 cites W1987567898 @default.
- W2279341257 cites W1988199152 @default.
- W2279341257 cites W1989537662 @default.
- W2279341257 cites W2007232419 @default.
- W2279341257 cites W2018672994 @default.
- W2279341257 cites W2030346137 @default.
- W2279341257 cites W2031095951 @default.
- W2279341257 cites W2034734038 @default.
- W2279341257 cites W2034980966 @default.
- W2279341257 cites W2043420946 @default.
- W2279341257 cites W2046590964 @default.
- W2279341257 cites W2048374961 @default.
- W2279341257 cites W2051724499 @default.
- W2279341257 cites W2053391393 @default.
- W2279341257 cites W2077267183 @default.
- W2279341257 cites W2092862335 @default.
- W2279341257 cites W2096665639 @default.
- W2279341257 cites W2115709125 @default.
- W2279341257 cites W2123343298 @default.
- W2279341257 cites W2130706434 @default.
- W2279341257 cites W2132568564 @default.
- W2279341257 cites W2133189744 @default.
- W2279341257 cites W2163415022 @default.
- W2279341257 cites W2164735136 @default.
- W2279341257 cites W2165553044 @default.
- W2279341257 cites W2174993212 @default.
- W2279341257 cites W2212350590 @default.
- W2279341257 cites W2237953221 @default.
- W2279341257 cites W2242065760 @default.
- W2279341257 cites W2242977001 @default.
- W2279341257 cites W2263352331 @default.
- W2279341257 cites W2283917576 @default.
- W2279341257 cites W3037296591 @default.
- W2279341257 cites W3100077952 @default.
- W2279341257 cites W3101113424 @default.
- W2279341257 cites W3121886585 @default.
- W2279341257 cites W4230252399 @default.
- W2279341257 cites W4249379191 @default.
- W2279341257 cites W4256681254 @default.
- W2279341257 doi "https://doi.org/10.1103/physrevb.93.241402" @default.
- W2279341257 hasPublicationYear "2016" @default.
- W2279341257 type Work @default.
- W2279341257 sameAs 2279341257 @default.
- W2279341257 citedByCount "98" @default.
- W2279341257 countsByYear W22793412572016 @default.
- W2279341257 countsByYear W22793412572017 @default.
- W2279341257 countsByYear W22793412572018 @default.
- W2279341257 countsByYear W22793412572019 @default.
- W2279341257 countsByYear W22793412572020 @default.
- W2279341257 countsByYear W22793412572021 @default.
- W2279341257 countsByYear W22793412572022 @default.
- W2279341257 countsByYear W22793412572023 @default.
- W2279341257 crossrefType "journal-article" @default.
- W2279341257 hasAuthorship W2279341257A5058862418 @default.
- W2279341257 hasAuthorship W2279341257A5060980314 @default.
- W2279341257 hasBestOaLocation W22793412572 @default.
- W2279341257 hasConcept C10138342 @default.
- W2279341257 hasConcept C110879396 @default.
- W2279341257 hasConcept C121332964 @default.
- W2279341257 hasConcept C130725296 @default.
- W2279341257 hasConcept C136676167 @default.
- W2279341257 hasConcept C150835508 @default.
- W2279341257 hasConcept C152991086 @default.
- W2279341257 hasConcept C162324750 @default.
- W2279341257 hasConcept C163845019 @default.
- W2279341257 hasConcept C177562468 @default.
- W2279341257 hasConcept C177909632 @default.
- W2279341257 hasConcept C181966813 @default.
- W2279341257 hasConcept C26873012 @default.
- W2279341257 hasConcept C2780328682 @default.
- W2279341257 hasConcept C52233224 @default.
- W2279341257 hasConcept C60718061 @default.
- W2279341257 hasConcept C62520636 @default.
- W2279341257 hasConcept C85725439 @default.
- W2279341257 hasConceptScore W2279341257C10138342 @default.
- W2279341257 hasConceptScore W2279341257C110879396 @default.
- W2279341257 hasConceptScore W2279341257C121332964 @default.