2019/05/10 by Sheng Ran, I-Lin Liu, Yun Suk Eo +10 · 2 citations
Physics and Astronomy · #cond-mat.supr-con
paper · pdf · doi:10.1038/s41567-019-0670-x
published as Nature Physics 2019
arxiv created 2019/05/10 · arxiv updated 2019/11/14
Applied magnetic fields underlie exotic quantum states, such as the fractional quantum Hall effect and Bose-Einstein condensation of spin excitations. Superconductivity, on the other hand, is inherently antagonistic towards magnetic fields. Only in rare cases can these effects be mitigated over limited fields, leading to reentrant superconductivity. Here, we report the unprecedented coexistence of multiple high-field reentrant superconducting phases in the spin-triplet superconductor UTe2. Strikingly, we observe superconductivity in the highest magnetic field range identified for any reentrant superconductor, beyond 65 T. These extreme properties reflect a new kind of exotic superconductivity rooted in magnetic fluctuations and boosted by a quantum dimensional crossover.