Cavity engineered phonon-mediated superconductivity in MgB from first principles quantum electrodynamics
arXiv:2404.08122 · doi:10.1073/pnas.2415061121
Abstract
Strong laser pulses can control superconductivity, inducing non-equilibrium transient pairing by leveraging strong-light matter interaction. Here we demonstrate theoretically that equilibrium ground-state phonon-mediated superconductive pairing can be affected through the vacuum fluctuating electromagnetic field in a cavity. Using the recently developed ab initio quantum electrodynamical density-functional theory approximation, we specifically investigate the phonon-mediated superconductive behavior of MgB under different cavity setups and find that in the strong light-matter coupling regime its superconducting transition temperature can be, in principles, enhanced by () in an in-plane (out-of-plane) polarized cavity. However, in a realistic cavity, we expect the T of MgB can increase, at most, by K via photon vacuum fluctuations. The results highlight that strong light-matter coupling in extended systems can profoundly alter material properties in a non-perturbative way by modifying their electronic structure and phononic dispersion at the same time. Our findings indicate a pathway to the experimental realization of light-controlled superconductivity in solid-state materials at equilibrium via cavity-material engineering.
30 pages, 3 figures
References in corpus (6)
- Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials
- Advanced capabilities for materials modelling with Quantum ESPRESSO
- Quantum Electrodynamical Density-Functional Theory: Bridging Quantum Optics and Electronic-Structure Theory
- Cavity Quantum-Electrodynamical Chern Insulator: Route Towards Light-Induced Quantized Anomalous Hall Effect in Graphene
- Effective Equilibrium Theory of Quantum Light-Matter Interaction in Cavities: Extended Systems and the Long Wavelength Approximation
- Testing the Renormalization of the von Klitzing Constant by Cavity Vacuum Fields
Cited by in corpus (10)
- Cavity engineering of solid-state materials without external driving
- Cavity Spectroscopy for Strongly Correlated Systems
- Quantum Electrodynamics of graphene Landau levels in a deep-subwavelength hyperbolic phonon polariton cavity
- High-pressure high-temperature solution growth, structural, and superconducting properties of Fe-substituted MgB2 single crystals
- Cavity-Mediated Electron-Electron Interactions: Renormalizing Dirac States in Graphene
- Quantum geometry induced microwave enhancement of flat band superconductivity
- Modifying electronic and structural properties of 2D van der Waals materials via cavity quantum vacuum fluctuations: A first-principles QEDFT study
- Harnessing Vacuum Fluctuations to Shape Electronic and Photonic Behavior
- Cavity-Driven Attractive Interactions in Quantum Materials
- Non-thermal pairing glue of electrons in the steady state