不稳定性
莫特跃迁
金属-绝缘体过渡
兴奋剂
赫巴德模型
绝缘体(电)
材料科学
电子
作者
Philip W. Phillips,Luke Yeo,Edwin W. Huang,Philip W. Phillips,Luke Yeo,Edwin W. Huang
出处
期刊:Nature Physics
[Nature Portfolio]
日期:2020-07-27
卷期号:16 (12): 1175-1180
被引量:87
标识
DOI:10.1038/s41567-020-0988-4
摘要
Because the cuprate superconductors are doped Mott insulators, it would be advantageous to solve even a toy model that exhibits both Mottness and superconductivity. We consider the Hatsugai-Kohmoto model, an exactly solvable system that is a prototypical Mott insulator above a critical interaction strength at half filling. Upon doping or reducing the interaction strength, our exact calculations show that the system becomes a non-Fermi liquid metal with a superconducting instability. In the presence of a weak pairing interaction, the instability produces a thermal transition to a superconducting phase, which is distinct from the BCS state, as evidenced by a gap-to-transition temperature ratio exceeding the universal BCS limit. The elementary excitations of this superconductor are not Bogoliubov quasiparticles but rather superpositions of doublons and holons, composite excitations signaling that the superconducting ground state of the doped Mott insulator inherits the non-Fermi liquid character of the normal state. An unexpected feature of this model is that it exhibits a superconductivity-induced transfer of spectral weight from high to low energies as seen in the cuprates as well as a suppression of the superfluid density relative to that in BCS theory.
科研通智能强力驱动
Strongly Powered by AbleSci AI