Hydrides under High Pressure
Author:
Funder
RFBR
Publisher
Springer Science and Business Media LLC
Subject
Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Link
https://link.springer.com/content/pdf/10.1007/s10948-021-06087-3.pdf
Reference44 articles.
1. Drozdov, A.P., Eremets, M.I., Troyan, I.A., Ksenofontov, V., Shylin, S.I.: Conventional superconductivity at 203 Kelvin at high pressures in the sulfur hydride system. Nature 525(7567), 73–76 (2015). https://doi.org/10.1038/nature14964
2. Eremets, M.I., Drozdov, A.P.: High-temperature conventional superconductivity. Phys. Usp. 59(11), 1154–1160 (2016). https://doi.org/10.3367/UFNe.2016.09.037921
3. Gor’kov, L.P., Kresin, V.Z.: Colloquium: High pressure and road to room temperature superconductivity. Rev. Mod. Phys. 90, 011001 (2018). https://doi.org/10.1103/RevModPhys.90.011001
4. Pickard, C.J., Errea, I., Eremets, M.I.: Superconducting hydrides under pressure. Annual Review of Condensed Matter Physics 11(1), 57–76 (2020). https://doi.org/10.1146/annurev-conmatphys-031218-013413
5. Flores-Livas, J.A., Boeri, L., Sanna, A., Profeta, G., Arita, R., Eremets, M.: A perspective on conventional high-temperature superconductors at high pressure: Methods and materials. Phys. Rep. 856, 1–78 (2020). https://doi.org/10.1016/j.physrep.2020.02.003. A perspective on conventional high-temperature superconductors at high pressure: Methods and materials
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