Properties and challenges of hot-phonon physics in metals: MgB and other compounds
arXiv:2202.08597 · doi:10.1016/j.progsurf.2022.100664
Abstract
The ultrafast dynamics of electrons and collective modes in systems out of equilibrium is crucially governed by the energy transfer from electronic degrees of freedom, where the energy of the pump source is usually absorbed, to lattice degrees of freedom. In conventional metals such process leads to an overall heating of the lattice, usually described by an effective lattice temperature , until final equilibrium with all the degrees of freedom is reached. In specific materials, however, few lattice modes provide a preferential channel for the energy transfer, leading to a non-thermal distribution of vibrations and to the onset of {\em hot phonons}, i.e., lattice modes with a much higher population than the other modes. Hot phonons are usually encountered in semiconductors or semimetal compounds, like graphene, where the preferential channel towards hot modes is dictated by the reduced electronic phase space. Following a different path, the possibility of obtaining hot-phonon physics also in metals has been however also recently prompted in literature, as a result of a strong anisotropy of the electron-phonon (el-ph) coupling. In the present paper, taking MgB as a representative example, we review the physical conditions that allow a hot-phonon scenario in metals with anisotropic el-ph coupling, and we discuss the observable fingerprints of hot phonons. Novel perspectives towards the prediction and experimental observation of hot phonons in other metallic compounds are also discussed.
15 figs enclosed. To appear in Prog. Surf. Sci
References in corpus (44)
- Superconductivity in single-layer films of FeSe with a transition temperature above 100 K
- Observation of Fermi-surface-dependent nodeless superconducting gaps in Ba0.6K0.4Fe2As2
- Non-adiabatic Kohn-anomaly in a doped graphene monolayer
- Nonlinear lattice dynamics as a basis for enhanced superconductivity in YBa2Cu3O6.5
- Ultrafast Photoluminescence from Graphene
- Three-dimensional MgB-type superconductivity in hole-doped diamond
- Band insulator to Mott insulator transition in 1T-TaS
- Disentangling the electronic and phononic glue in a high-Tc superconductor
- Ultrafast transient generation of spin-densitywave order in the normal state of BaFe2As2 driven by coherent lattice vibrations
- Coherent and incoherent electron-phonon coupling in graphite observed with radio-frequency compressed ultrafast electron diffraction
- Ultrafast Electron-Phonon Decoupling in Graphite
- Transient excitons at metal surfaces
- Coupled dynamics of electrons and phonons in metallic nanotubes: current saturation from hot phonons generation
- Evolution of multi-gap superconductivity in the atomically thin limit: Strain-enhanced three-gap superconductivity in monolayer MgB
- Ab initio calculations of ultra-short carrier dynamics in 2D materials: valley depolarization in single-layer WSe
- Snapshots of the retarded interaction of charge carriers with ultrafast fluctuations in cuprates
- Ultrafast transient response and electron-phonon coupling in the iron-pnictide superconductor Ba(Fe(1-x)Co(x))2As2
- Direct Role of Structural Dynamics in Electron-Lattice Coupling of Superconducting Cuprates
- First-principles approach to excitons in time-resolved and angle-resolved photoemission spectra
- Prediction of new crystal structure phases in metal borides: a lithium monoboride analog to MgB2
- Toward precise simulations of the coupled ultrafast dynamics of electrons and atomic vibrations in materials
- High-T Superconductivity in doped boron-carbon clathrates
- Nonequilibrium Lattice Dynamics in Monolayer MoS2
- Ultrafast electron calorimetry uncovers a new long-lived metastable state in 1T-TaSe mediated by mode-selective electron-phonon coupling
- Accessing the anisotropic non-thermal phonon populations in black phosphorus
- Nonequilibrium Charge-Density-Wave Order Beyond the Thermal Limit
- c-axis Raman Scattering in MgB2: Observation of a Dirty-Limit Gap in the pi-bands
- Dynamically induced magnetism in KTaO
- Novel Electron-Phonon Relaxation Pathway in Graphite Revealed by Time-Resolved Raman Scattering and Angle-Resolved Photoemission Spectroscopy
- Anharmonic effects in MgB2? A comparative inelastic X-ray scattering and Raman study
- Unmasking the Origin of Kinks in the Photoemission Spectra of Cuprate Superconductors
- Origin of the Electron-Phonon Interaction of Topological Semimetal Surfaces Measured with Helium Atom Scattering
- Study of temperature dependent atomic correlations in MgB
- Nonequilibrium phonon effects in midinfrared quantum cascade lasers
- Multi-phonon diffuse scattering in solids from first-principles: Application to layered crystals and 2D materials
- Efficient first-principles methodology for the calculation of the all-phonon inelastic scattering in solids
- The Electron-Phonon Interaction of Low-Dimensional and Multi-Dimensional Materials from He Atom Scattering
- Plasmonically assisted channels of photoemission from metals
- Phonon-assisted processes in the ultraviolet transient optical response of graphene
- Universal features of canonical phonon angular momentum without time-reversal symmetry
- Transient Hot Electron Dynamics in Single-Layer TaS
- Hot carrier-assisted switching of the electron-phonon interaction in 1-VSe
- Relaxation timescales and electron-phonon coupling in optically-pumped YBaCuO revealed by time-resolved Raman scattering
- Fingerprints of hot-phonon physics in time-resolved correlated quantum lattice dynamics