Spin-valley locking in the normal state of a transition-metal dichalcogenide superconductor
Bawden L, Cooil SP, Mazzola F, Riley JM, Collins-McIntyre LJ, Sunko V, Hunvik KWB, Leandersson M, Polley CM, Balasubramanian T, Kim TK, Hoesch M, Wells JW, Balakrishnan G, Bahramy MS, King PDC. 2016. Spin-valley locking in the normal state of a transition-metal dichalcogenide superconductor. Nature Communications. 7, 11711.
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Author
Bawden, L.;
Cooil, S. P.;
Mazzola, F.;
Riley, J. M.;
Collins-McIntyre, L. J.;
Sunko, VeronikaISTA
;
Hunvik, K. W. B.;
Leandersson, M.;
Polley, C. M.;
Balasubramanian, T.;
Kim, T. K.;
Hoesch, M.
All

All
Abstract
Metallic transition-metal dichalcogenides (TMDCs) are benchmark systems for studying and controlling intertwined electronic orders in solids, with superconductivity developing from a charge-density wave state. The interplay between such phases is thought to play a critical role in the unconventional superconductivity of cuprates, Fe-based and heavy-fermion systems, yet even for the more moderately-correlated TMDCs, their nature and origins have proved controversial. Here, we study a prototypical example, 2H-NbSe2, by spin- and angle-resolved photoemission and first-principles theory. We find that the normal state, from which its hallmark collective phases emerge, is characterized by quasiparticles whose spin is locked to their valley pseudospin. This results from a combination of strong spin–orbit interactions and local inversion symmetry breaking, while interlayer coupling further drives a rich three-dimensional momentum dependence of the underlying Fermi-surface spin texture. These findings necessitate a re-investigation of the nature of charge order and superconducting pairing in NbSe2 and related TMDCs.
Publishing Year
Date Published
2016-05-23
Journal Title
Nature Communications
Publisher
Springer Nature
Volume
7
Article Number
11711
ISSN
IST-REx-ID
Cite this
Bawden L, Cooil SP, Mazzola F, et al. Spin-valley locking in the normal state of a transition-metal dichalcogenide superconductor. Nature Communications. 2016;7. doi:10.1038/ncomms11711
Bawden, L., Cooil, S. P., Mazzola, F., Riley, J. M., Collins-McIntyre, L. J., Sunko, V., … King, P. D. C. (2016). Spin-valley locking in the normal state of a transition-metal dichalcogenide superconductor. Nature Communications. Springer Nature. https://doi.org/10.1038/ncomms11711
Bawden, L., S. P. Cooil, F. Mazzola, J. M. Riley, L. J. Collins-McIntyre, Veronika Sunko, K. W. B. Hunvik, et al. “Spin-Valley Locking in the Normal State of a Transition-Metal Dichalcogenide Superconductor.” Nature Communications. Springer Nature, 2016. https://doi.org/10.1038/ncomms11711.
L. Bawden et al., “Spin-valley locking in the normal state of a transition-metal dichalcogenide superconductor,” Nature Communications, vol. 7. Springer Nature, 2016.
Bawden L, Cooil SP, Mazzola F, Riley JM, Collins-McIntyre LJ, Sunko V, Hunvik KWB, Leandersson M, Polley CM, Balasubramanian T, Kim TK, Hoesch M, Wells JW, Balakrishnan G, Bahramy MS, King PDC. 2016. Spin-valley locking in the normal state of a transition-metal dichalcogenide superconductor. Nature Communications. 7, 11711.
Bawden, L., et al. “Spin-Valley Locking in the Normal State of a Transition-Metal Dichalcogenide Superconductor.” Nature Communications, vol. 7, 11711, Springer Nature, 2016, doi:10.1038/ncomms11711.
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arXiv 1603.05207