Успехи физики металлов (Dec 2023)

Multiband Quantum Materials

  • V. V. Bezguba and O. A. Kordyuk

DOI
https://doi.org/10.15407/ufm.24.04.641
Journal volume & issue
Vol. 24, no. 4
pp. 641 – 653

Abstract

Read online

Quantum materials are defined by the emergence of new properties resulting from collective quantum effects and by holding promise for their quantum applications. Novel superconductors, from high-Tc cuprates and iron-based superconductors to twisted monolayers, exhibit a higher level of emergent complexity, with a multiband electronic structure playing a pivotal role in their comprehension and potential applications. Here, we provide a brief overview of key multiband effects in these superconductors and topological semimetals, offering guidelines for the theory-assisted development of new quantum materials and devices.

Keywords