© 2021 American Physical Society. We analyze the thermoelectric response of Dirac and Weyl semimetals using the semiclassical approach, focusing on the extrinsic contributions due to skew-scattering and side jump. Our results apply to the linear response Nernst effect in ferromagnetic Dirac materials such as Fe3Sn2 and Weyl semimetals like Co3Sn2S2. In the case of Fe3Sn2 we obtain a very good agreement with known experimental anomalous Hall effect measurements, and based on that we predict a large Nernst effect in this material. We also extend the investigation to second-order response, focusing on monolayer graphene on hBN with trigonal warping as an example. Our analysis indicates that the extrinsic contributions can be a significant comp...
Topological Weyl semimetals (WSM), a new state of quantum matter with gapless nodal bulk spectrum an...
WTe2 is one of a series of recently discovered high mobility semimetals, some of whose properties ar...
Dirac materials have formed a thriving and prosperous direction in modern condensed matter physics. ...
International audienceIntrinsic anomalous Nernst effect, like its Hall counterpart, is generated by ...
Weyl semimetals exhibit interesting electronic properties due to their topological band structure. I...
We study the anomalous Nernst and thermal Hall effects in a linearized low-energy model of a tilted ...
© 2019 American Physical Society. We calculate the thermoelectric response coefficients of three-dim...
Magnetic materials are of fundamental importance to the welfare of our society since they find use, ...
The discovery of topological quantum materials represents a striking innovation in modern condensed ...
Based on high-throughput (HTP) first-principles calculations, we evaluated the anomalous Hall and an...
6 pages including appendix, 1 figureInternational audienceWe show that a conformal anomaly in Weyl a...
© 2018 American Chemical Society. WTe2 is one of a series of recently discovered high mobility semim...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
Topological materials ranging from topological insulators to Weyl and Dirac semimetals form one of t...
Anomalous Nernst effect, as a thermal partner of anomalous Hall effect, is particularly sensitive to...
Topological Weyl semimetals (WSM), a new state of quantum matter with gapless nodal bulk spectrum an...
WTe2 is one of a series of recently discovered high mobility semimetals, some of whose properties ar...
Dirac materials have formed a thriving and prosperous direction in modern condensed matter physics. ...
International audienceIntrinsic anomalous Nernst effect, like its Hall counterpart, is generated by ...
Weyl semimetals exhibit interesting electronic properties due to their topological band structure. I...
We study the anomalous Nernst and thermal Hall effects in a linearized low-energy model of a tilted ...
© 2019 American Physical Society. We calculate the thermoelectric response coefficients of three-dim...
Magnetic materials are of fundamental importance to the welfare of our society since they find use, ...
The discovery of topological quantum materials represents a striking innovation in modern condensed ...
Based on high-throughput (HTP) first-principles calculations, we evaluated the anomalous Hall and an...
6 pages including appendix, 1 figureInternational audienceWe show that a conformal anomaly in Weyl a...
© 2018 American Chemical Society. WTe2 is one of a series of recently discovered high mobility semim...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
Topological materials ranging from topological insulators to Weyl and Dirac semimetals form one of t...
Anomalous Nernst effect, as a thermal partner of anomalous Hall effect, is particularly sensitive to...
Topological Weyl semimetals (WSM), a new state of quantum matter with gapless nodal bulk spectrum an...
WTe2 is one of a series of recently discovered high mobility semimetals, some of whose properties ar...
Dirac materials have formed a thriving and prosperous direction in modern condensed matter physics. ...