ARPES on HTSC: simplicity vs. complexity
A. A. Kordyuk, S. V. Borisenko
Abstract
A notable role in understanding of microscopic electronic properties of high temperature superconductors (HTSC) belongs to angle resolved photoemission spectroscopy (ARPES). This technique supplies a direct window into reciprocal space of solids: the momentum-energy space where quasiparticles (the electrons dressed in clouds of interactions) dwell. Any interaction in the electronic system, e.g. superconducting pairing, leads to modification of the quasi-particle spectrum--to redistribution of the spectral weight over the momentum-energy space probed by ARPES. A continued development of the technique had an effect that the picture seen through the ARPES window became clearer and sharper until the complexity of the electronic band structure of the cuprates had been resolved. Now, in an optimal for superconductivity doping range, the cuprates much resemble a normal metal with well predicted electronic structure, though with rather strong electron-electron interaction. This principal disentanglement of the complex physics from complex structure reduced the mystery of HTSC to a tangible problem of interaction responsible for quasi-particle formation. Here we present a short overview of resent ARPES results, which, we believe, denote a way to resolve the HTSC puzzle.
Create a lesson
Related papers
Superconductivity of Tellurium Polyhydride with Tc above 90K
Jinfu Zhu, Guiqi Liu, Yuanhao Su et al.
Twist-Tunable Paramagnetic Superconductivity in d-wave Altermagnet/Superconductor Heterostructures
Narges Kia, Saeed H. Abedinpour, Zahra Faraei
Chemical Perspectives on Cuprate Superconductivity: Hole-Protected Spin Dimers as d Wave Cooper Pairs
Myung-Hwan Whangbo, Reinhard K. Kremer
Superheating Field of Extreme Type-II Superconductors Calculated from the Eliashberg Theory
Ramesh Paudel, Alex Gurevich
Ballistic-to-Localized Dynamics as Signature of Quantum Phase Transition in Josephson Junction
F. G. Capone, A. de Candia, G. Di Bello et al.
Interplay of Excitonic Charge Density Wave and Superconductivity in Transition Metal Dichalcogenides
Ayussh Anubhav Patel, Amit Ghosal