arXiv · 2210.10371
Amperean superconductivity cannot be induced by deep subwavelength cavities in a two-dimensional material
Abstract
Amperean superconductivity is an exotic phenomenon stemming from attractive effective electron-electron interactions (EEEIs) mediated by a transverse gauge field. Originally introduced in the context of quantum spin liquids and high-Tc superconductors, Amperean superconductivity has been recently proposed to occur at temperatures on the order of 1-20 K in two-dimensional, parabolic-band, electron gases embedded inside deep sub-wavelength optical cavities. In this work, we first generalize the microscopic theory of cavity-induced Amperean superconductivity to the case of graphene and then argue that this superconducting state cannot be achieved in the deep sub-wavelength regime. In the latter regime, indeed, a cavity induces only EEEIs between density fluctuations rather than the current-current interactions which are responsible for Amperean pairing.
Explore related subjects
Keep this discovery
Gian Marcello Andolina, Antonella De Pasquale, Francesco Maria Dimitri Pellegrino, Iacopo Torre, Frank H. L. Koppens, Marco Polini. 2022-10-19. Amperean superconductivity cannot be induced by deep subwavelength cavities in a two-dimensional material. https://doi.org/10.1103/physrevb.109.104513
Cite the original work for its findings. Save a collection to share your selection of sources.