43 citations · 139 across the 8 of their papers we have counts for
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Characterization of near-room-temperature superconductivity in yttrium superhydrides
E. F. Talantsev
Recently, Troyan et al (2019 arXiv:1908.01534) and Kong et al (2019 arXiv:1909.10482) extended near-room-temperature superconductors family by new yttrium superhydride polymorphs,…
Classifying superconductivity in an infinite-layer nickelate NdSrNiO
E. F. Talantsev
Recently Li et al (2019 Nature 572 624) discovered a new type of oxide superconductor Nd0.8Sr0.2NiO2 with T = 14 K. To classify superconductivity in this infinite-layer nickela…
Classifying superconductivity in ThH-ThD superhydrides/superdeuterides
E. F. Talantsev, R. C. Mataira
Satterthwaite and Toepke (1970 Phys. Rev. Lett. 25 741) discovered that Th4H15-Th4D15 superhydrides are superconducting but exhibit no isotope effect. As the isotope effect is a fu…
Classifying hydrogen-rich superconductors
Evgueni F. Talantsev
The era of near-room-temperature superconductivity started after experimental discovery by Drozdov et al (2015 Nature 525 73) who found that compressed H3S exhibits superconducting…
Classifying induced superconductivity in atomically thin Dirac-cone materials
Evgueni F. Talantsev
Recently, Kayyalha et al. (2019 Phys. Rev. Lett. 122 047003) reported on anomalous enhancement of the self-field critical currents, Ic(sf,T), at low temperatures in Nb/BiSbTeSe2-na…
Classifying superconductivity in compressed H3S
E. F. Talantsev
The discovery of high-temperature superconductivity in compressed H3S by Drozdov and co-workers (A. Drozdov, et. al., Nature 525, 73 (2015)) heralded a new era in superconductivity…