超导电性
铁电性
凝聚态物理
极地的
兴奋剂
材料科学
金属
物理
电介质
量子力学
光电子学
冶金
作者
Y. Tomioka,Naoki Shirakawa,Isao Inoue
标识
DOI:10.1038/s41535-022-00524-9
摘要
Abstract Two different ferroelectric materials, Sr 0.95 Ba 0.05 TiO 3 and Sr 0.985 Ca 0.015 TiO 3 , can be turned into polar metals with broken centrosymmetry via electron doping. Systematic substitution of Nb 5+ for Ti 4+ has revealed that these polar metals both commonly show a simple superconducting dome with a single convex shape. Interestingly, the superconducting transition temperature T c is enhanced more strongly in these polar metals when compared with the nonpolar matrix Sr(Ti, Nb)O 3 . The maximum T c reaches 0.75 K, which is the highest reported value among the SrTiO 3 -based families to date. However, the T c enhancement is unexpectedly lower within the vicinity of the putative ferroelectric quantum critical point. The enhancement then becomes much more prominent at locations further inside the dilute carrier-density region, where the screening is less effective. These results suggest that centrosymmetry breaking, i.e., the ferroelectric nature, does not kill the superconductivity. Instead, it enhances the superconductivity directly, despite the absence of strong quantum fluctuations.
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