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High-temperature superconductivity
Nature Reviews Physics ( IF 38.5 ) Pub Date : 2021-05-28 , DOI: 10.1038/s42254-021-00324-3 Xingjiang Zhou , Wei-Sheng Lee , Masatoshi Imada , Nandini Trivedi , Philip Phillips , Hae-Young Kee , Päivi Törmä , Mikhail Eremets
Nature Reviews Physics ( IF 38.5 ) Pub Date : 2021-05-28 , DOI: 10.1038/s42254-021-00324-3 Xingjiang Zhou , Wei-Sheng Lee , Masatoshi Imada , Nandini Trivedi , Philip Phillips , Hae-Young Kee , Päivi Törmä , Mikhail Eremets
Despite decades of intense theoretical, experimental and computational effort, a microscopic theory of high-temperature superconductivity is not yet established. Eight researchers share their contributions to the search for a better understanding of unconventional superconductivity and their hopes for the future of the field.
中文翻译:
高温超导
尽管数十年来进行了大量的理论、实验和计算工作,但尚未建立高温超导的微观理论。八位研究人员分享了他们为更好地理解非常规超导性所做的贡献以及他们对该领域未来的希望。
更新日期:2021-05-28
中文翻译:
高温超导
尽管数十年来进行了大量的理论、实验和计算工作,但尚未建立高温超导的微观理论。八位研究人员分享了他们为更好地理解非常规超导性所做的贡献以及他们对该领域未来的希望。