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- W4308505720 abstract "Linearly dispersing Rarita-Schwinger-Weyl (RSW) fermions featuring two Fermi velocities are the key constituents of itinerant spin-3/2 quantum materials. When doped, RSW metals sustain two Fermi surfaces (FSs), around which one fully gapped $s$-wave and five emph{mixed-parity} local pairings can take place. Four of them support point nodes at the poles of two FSs. For weak (strong) pairing amplitudes ($Delta$), gapless north and south poles belonging to the same (different) FS(s) get connected by emph{polar hairs}, one-dimensional line nodes occupying the region between two FSs. The remaining one, by contrast, supports four nodal rings in between two FSs, symmetrically placed about their equators, but only when $Delta$ is small. For large $Delta$, this paired state becomes fully gapped. The transition temperature and pairing amplitudes follow the BCS scaling. We explicitly showcase these outcomes for a rotationally symmetric RSW metal, and contrast our findings when the system possesses an enlarged Lorentz symmetry and with the ones in spin-3/2 Luttinger materials." @default.
- W4308505720 created "2022-11-12" @default.
- W4308505720 creator A5015516729 @default.
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- W4308505720 date "2022-11-04" @default.
- W4308505720 modified "2023-09-26" @default.
- W4308505720 title "Polar hairs of mixed-parity nodal superconductors in Rarita-Schwinger-Weyl metals" @default.
- W4308505720 doi "https://doi.org/10.48550/arxiv.2211.02649" @default.
- W4308505720 hasPublicationYear "2022" @default.
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