Possible enhancement of the superconducting due to sharp Kohn-like soft phonon anomalies
arXiv:2211.12015 · doi:10.1088/1361-648X/acbd0a
Abstract
Phonon softening is a ubiquitous phenomenon in condensed matter systems which is often associated with charge density wave (CDW) instabilities and anharmonicity. The interplay between phonon softening, CDW and superconductivity is a topic of intense debate. In this work, the effects of anomalous soft phonon instabilities on superconductivity are studied based on a recently developed theoretical framework that accounts for phonon damping and softening within the Migdal-Eliashberg theory. Model calculations show that the phonon softening in the form of a sharp dip in the phonon dispersion relation, either acoustic or optical (including the case of Kohn-type anomalies typically associated with CDW), can cause a manifold increase of the electron-phonon coupling constant . This, under certain conditions, which are consistent with the concept of optimal frequency introduced by Bergmann and Rainer, can produce a large increase of the superconducting transition temperature . In summary, our results suggest the possibility of reaching high-temperature superconductivity by exploiting soft phonon anomalies restricted in momentum space.
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References in corpus (24)
- Unusual competition of superconductivity and charge-density-wave state in a compressed topological kagome metal
- Ferroelectric Soft Phonons, Charge Density Wave Instability and Strong Electron-Phonon Coupling in BiS2-Layered Superconductors
- Origin of superconductivity and latent charge density wave in NbS
- An Isotopic Fingerprint of Electron-Phonon Coupling in High-Tc Cuprates
- Bond stretching phonon softening and angle-resolved photoemission kinks in optimally doped Bi2Sr1.6La0.4Cu2O6 superconductors
- Giant Phonon Softening and Enhancement of Superconductivity by Phosphorus Doping of BaNi2As2
- Charge order at high temperature in cuprate superconductors
- Stripe order enhanced superconductivity in the Hubbard model
- Colloquium: Hydrodynamics and holography of charge density wave phases
- Incommensurate phonon anomaly and the nature of charge density waves in cuprates
- Superconductivity emerging from a stripe charge order in IrTe2 nanoflakes
- Signature of quantum criticality in cuprates by charge density fluctuations
- Rapid Suppression of the Charge Density Wave in YBaCuO under Hydrostatic Pressure
- Microscopic analysis of sound attenuation in low-temperature amorphous solids reveals quantitative importance of non-affine effects
- Sharp optical phonon softening close to optimal doping in LaBaCuO
- Soft-phonon and charge-density-wave formation in nematic BaNiAs
- Theory of sound attenuation in amorphous solids from nonaffine motions
- Superconducting dome in ferroelectric-type materials from soft mode instability
- Identification of a Critical Doping for Charge Order Phenomena in Bi-2212 Cuprates via RIXS
- Glass-induced enhancement of superconducting : Pairing via dissipative mediators
- Anomalous softening of phonon-dispersion in cuprate superconductors
- Full Temperature-Dependent Potential and Anharmonicity in Metallic Hydrogen: Colossal NQE and the Consequences
- In-plane Isotropy of the Low Energy Phonon Anomalies in YBaCuO
- Suppression of superconductivity by charge density wave order in YBaCuO
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- Dynamical renormalization of electron-phonon coupling in conventional superconductors
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- Glassy heat capacity from overdamped phasons and a hypothetical phason-induced superconductivity in incommensurate structures
- Quantum confinement theory of ultra-thin films: electronic, thermal and superconducting properties
- Tunable surface electron gas and effect of phonons in SrCuO: A first-principles study
- Constrains on s and d components of electron boson coupling constants in one band d wave Eliashberg theory for high Tc superconductors
- Correlation between optical phonon softening and superconducting in YBaCuO within -wave Eliashberg theory
- Exploring charge and spin fluctuations in infinite-layer cuprate SrCuO from a phonon perspective
- Boosting superconductivity in ultrathin YBaCuO films via nanofaceted substrates
- Thoughts about boosting superconductivity
- Pressure-induced concurrent amorphization and superconductivity in topological material NbNiTe5
- Reaching Quantum Critical Point by Adding Non-magnetic Disorder in Single Crystals of Superconductor
- Unconventional superconductivity mediated by exciton density wave fluctuations