Superconductivity above 30K Achieved in Dense Scandium
材料科学
超导电性
物理
凝聚态物理
作者
Xin 鑫 He 何,Changling 昌玲 Zhang 张,Zhiwen 芷文 Li 李,Sijia 思佳 Zhang 张,Shaomin 少敏 Feng 冯,Jianfa 建发 Zhao 赵,Ke 可 Lu 卢,Baosen 保森 Min 闵,Yi 毅 Peng 彭,Tao Wang,Jin 静 Song 宋,Luhong Wang,Saori I. Kawaguchi,Cheng 诚 Ji 吉,Bing 冰 Li 李,Haozhe Liu,John S. Tse,Changqing 常青 Jin 靳
出处
期刊:Chinese Physics Letters [Institute of Physics] 日期:2023-09-01卷期号:40 (10): 107403-107403被引量:10
标识
DOI:10.1088/0256-307x/40/10/107403
摘要
Superconductivity is one of most intriguing quantum phenomena, and the quest for elemental superconductors with high critical temperature ( T c ) is of great scientific significance due to their relatively simple material composition and the underlying mechanism. Here we report the experimental discovery of densely compressed scandium (Sc) becoming the first elemental superconductor with T c breaking into 30 K range, which is comparable to the T c values of the classic La–Ba–Cu–O or LaFeAsO superconductors. Our results show that Tconset of Sc increases from ∼ 3 K at around 43 GPa to ∼ 32 K at about 283 GPa ( Tczero∼31 K), which is well above liquid neon temperature. Interestingly, measured T c shows no sign of saturation up to the maximum pressure achieved in our experiments, indicating that T c may be even higher upon further compression.