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Atomically Thin Superconductors

Journal Article


Abstract


  • In recent years, atomically thin superconductors, including atomically thin elemental superconductors, single layer FeSe films, and few-layer cuprate superconductors, have been studied extensively. This hot research field is mainly driven by the discovery of significant superconductivity enhancement and high-temperature interface superconductivity in single-layer FeSe films epitaxially grown on SrTiO3 substrates in 2012. This study has attracted tremendous research interest and generated more studies focusing on further enhancing superconductivity and finding the origin of the superconductivity. A few years later, research on atomically thin superconductors has extended to cuprate superconductors, unveiling many intriguing properties that have neither been proposed or observed previously. These new discoveries challenge the current theory regarding the superconducting mechanism of unconventional superconductors and indicate new directions on how to achieve high-transition-temperature superconductors. Herein, this exciting recent progress is briefly discussed, with a focus on the recent progress in identifying new atomically thin superconductors.

Publication Date


  • 2021

Published In


Citation


  • Li, Z., Sang, L., Liu, P., Yue, Z., Fuhrer, M. S., Xue, Q., & Wang, X. (2021). Atomically Thin Superconductors. Small, 17(9). doi:10.1002/smll.201904788

Scopus Eid


  • 2-s2.0-85084199115

Volume


  • 17

Issue


  • 9

Abstract


  • In recent years, atomically thin superconductors, including atomically thin elemental superconductors, single layer FeSe films, and few-layer cuprate superconductors, have been studied extensively. This hot research field is mainly driven by the discovery of significant superconductivity enhancement and high-temperature interface superconductivity in single-layer FeSe films epitaxially grown on SrTiO3 substrates in 2012. This study has attracted tremendous research interest and generated more studies focusing on further enhancing superconductivity and finding the origin of the superconductivity. A few years later, research on atomically thin superconductors has extended to cuprate superconductors, unveiling many intriguing properties that have neither been proposed or observed previously. These new discoveries challenge the current theory regarding the superconducting mechanism of unconventional superconductors and indicate new directions on how to achieve high-transition-temperature superconductors. Herein, this exciting recent progress is briefly discussed, with a focus on the recent progress in identifying new atomically thin superconductors.

Publication Date


  • 2021

Published In


Citation


  • Li, Z., Sang, L., Liu, P., Yue, Z., Fuhrer, M. S., Xue, Q., & Wang, X. (2021). Atomically Thin Superconductors. Small, 17(9). doi:10.1002/smll.201904788

Scopus Eid


  • 2-s2.0-85084199115

Volume


  • 17

Issue


  • 9