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Superconducting Phase Interference Effect in Momentum Space by Zhan, Bo; Gao, Qiang; Chi, Runze; Chen, Yiwen; Zhao, Lin; Lv, Dingshun; Zhou, Xingjiang; Xiang, Tao is a scholarly article available to read on EtoBox.
What is Superconducting Phase Interference Effect in Momentum Space about?
The pairing symmetry of superconducting electrons can be identified through various phase-sensitive experiments. However, phenomena like the Josephson effect predominantly depend on frameworks exhibiting macroscopic interference. At the microscopic level, phase interference effects within momentum space are absent due to the intrinsic challenge of extracting phase information from specific momentum points. By incorporating the hybridization effect between a primary band and its replica bands generated by density wave orders or other interactions, we introduce a superconducting phase interference effect at the intersection points on the Fermi surfaces of these two bands. This effect clarifies the extraordinary behavior observed in the single-particle spectral function in recent angle-resolved photoemission spectroscopy (ARPES) measurements in the $Bi_2Sr_2CaCu_2O_{8+\delta}$ (Bi2212) superconductor. It also offers a new insight into the non-zero Josephson current observed in a $45^\circ$-twisted Josephson junction of cuprate superconductors.
- Author
- Zhan, Bo; Gao, Qiang; Chi, Runze; Chen, Yiwen; Zhao, Lin; Lv, Dingshun; Zhou, Xingjiang; Xiang, Tao
- Published
- 2024
- Language
- EN