Ising paramagnons in two dimensional 2H-NbSe2
ORAL
Abstract
Paramagnons are the collective modes that govern the spin response of nearly ferromagnetic conductors. Their interactions with quasiparticles can induce spin-triplet superconductivity, a scenario that may occur in spin-valley coupled two dimensional transition metal dichalcogenides such as 2H-NbSe2. This motivates this work exploring paramagnons in systems with spin split bands due to spin orbit coupling leading to spin-valley coupling. We use both a Kane-Mele-Hubbard model and a tight-binding model derived from DFT calculations for a monolayer of 2H-NbSe2. We find paramagnons with energies around 1 meV that feature a colossal magnetic anisotropy. In the longitudinal (spin preserving) channel, we obtain the conventional paramagnon enhancement of the spin response, whereas spin response is quenched in the transverse channel. We discuss a possible connection of these Ising paramagnon with Ising superconductivity observed in these materials.
*We acknowledge funding from MINECO-Spain (Grant No. PID2019-109539GB-41) and from FCT grant (PTDC/FIS-MAC/2045/2021)
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Publication: A. T. Costa, M. Costa, J. Fernández-Rossier, https://arxiv.org/abs/2110.09809
Presenters
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Joaquin Fernandez-Rossier
- International Iberian Nanotechnology Lab