2022
DOI: 10.1103/physrevb.106.195113
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Anomalous Hall conductivity control in Mn3NiN antiperovskite by epitaxial strain along the kagome plane

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Cited by 9 publications
(2 citation statements)
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“…Among these Sr 3 SnO, Sr 3 PbO and Ca 3 PbO are Dirac semimetals, while Mn based compounds Mn 3 ZnC is shown to be a nodal line semimetal with intriguing magnetic properties [1][2][3][4]. Mn 3 NiN, Mn 3 CuN and Mn 3 Ni 1-x Cu x C antiperovskite materials have non-trivial transport properties such as anomalous Hall effect and anomalous Nernst effect [6][7][8]. Teicher et al predicted that Mn 3 ZnC show nodal line semimetal properties with separate Weyl nodes near the Fermi level [4].…”
Section: Introductionmentioning
confidence: 99%
“…Among these Sr 3 SnO, Sr 3 PbO and Ca 3 PbO are Dirac semimetals, while Mn based compounds Mn 3 ZnC is shown to be a nodal line semimetal with intriguing magnetic properties [1][2][3][4]. Mn 3 NiN, Mn 3 CuN and Mn 3 Ni 1-x Cu x C antiperovskite materials have non-trivial transport properties such as anomalous Hall effect and anomalous Nernst effect [6][7][8]. Teicher et al predicted that Mn 3 ZnC show nodal line semimetal properties with separate Weyl nodes near the Fermi level [4].…”
Section: Introductionmentioning
confidence: 99%
“…In the modern quest for novel and exciting phenomena in new materials, antiperovskites, or inverse perovskites, with the formulae A 3 BX have stood out as an astonishing type of material showing large anomalous Hall conductivity, [1][2][3][4][5] superconductivity, [6][7][8][9] good performance for new batteries, 10,11 tunable hybrid improper ferroelectricity, 12 tangible magnetocaloric effects, 13 and large spin-lattice coupling. [14][15][16][17][18] These properties are just a few examples that can be mentioned among the vast functionalities offered by these materials.…”
Section: Introductionmentioning
confidence: 99%