Upper limit for superconducting transition temperature in electron-phonon superconductors: very strong coupling
arXiv:2506.19326 · doi:10.1007/s10948-025-07076-6
Abstract
We present a brief review of some recent work on the problem of highest achievable temperature of superconducting transition in electron-phonon systems. The discovery of record-breaking values of in quite a number of hydrides under high pressure was an impressive demonstration of capabilities of electron-phonon mechanism of Cooper pairing. This lead to an increased interest on possible limitations of Eliashberg-McMillan theory as the main theory of superconductivity in a system of electrons and phonons. We shall consider some basic conclusions following from this theory and present some remarks on the limit of very strong electron-phonon coupling. We shall discuss possible limitations on the value of the coupling constant related to possible lattice and specific heat instability and conclude that within the stable metallic phase the effective pairing constant may acquire very large values. We discuss some bounds for derived in the strong coupling limit and propose an elementary estimate of an upper limit for , expressed via combination of fundamental physical constants. Finally we also briefly discuss some pessimistic estimates for of metallic hydrogen obtained in ``jellium'' model.
14 pages, 4 figures, dedicated to the memory of Mikhail Eremets. arXiv admin note: substantial text overlap with arXiv:2106.09948
References in corpus (16)
- Conventional superconductivity at 203 K at high pressures
- A Perspective on Conventional High-Temperature Superconductors at High Pressure: Methods and Materials
- Superconducting hydrides under pressure
- High Pressure and Road to Room Temperature Superconductivity
- Gap formation and soft phonon mode in the Holstein model
- Room Temperature Superconductivity: the Roles of Theory and Materials Design
- Eliashberg theory of phonon-mediated superconductivity -- when it is valid and how it breaks down
- Quantitative reliability of Migdal-Eliashberg theory for strong electron-phonon coupling
- Heuristic bounds on superconductivity and how to exceed them
- Breakdown of the Migdal-Eliashberg theory and a theory of lattice-fermionic superfluidity
- Progress, problems and prospects of room-temperature superconductivity
- Free energy and specific heat near a quantum critical point of a metal
- Limits of Eliashberg Theory and Bounds for Superconducting Transition Temperature
- Upper limit for superconducting transition temperature in Eliashberg-McMillan theory
- Instability of metals with respect to strong electron-phonon interaction
- Superconductivity in metallic hydrogen