Higgs physics in superconductors
arXiv:2512.02637 · doi:10.7498/aps.74.20250241
Abstract
As pointed out by Nambu&Goldstone, continuous symmetry breaking gives rise to gapless bosonic excitation. In superconductors, continuous local U(1) gauge symmetry is broken. The gapless excitation thus created is the collective phase mode of a superconductor. In 1962, Anderson pointed out that Coulomb interaction lifts this gapless mode to the superconducting plasma frequency. Therefore, in a superconducting fluid there are no bosonic excitations below the Cooper pair binding energy. Anderson mechanism also implies that the massless photon becomes massive in a superconductor. It provides a microscopic theory for dissipationless charge transport (with Landau criterion for superfluidity) and the Meissner effect in a superconductor. Jumping to particle physics, to explain why the gauge bosons for electroweak interaction are massive, Higgs, Englert, Kibble et al. proposed the existence of the Higgs field. This matter field couples to the massless W, Z bosons and generates mass via the Higgs mechanism. Due to their conceptual similarities, these two mechanisms are referred to as the Anderson-Higgs mechanism. In 2013, the detection of the Higgs boson provided the final proof for the Higgs hypothesis decades after its conception. The amplitude mode of a superconductor, which corresponds to the Higgs boson in the above analogy, is referred to as the Higgs mode. Its spectroscopic detection has also remained elusive for decades. In recent years, the development of ultrafast techniques enabled an effective approach for studying the mode. Here, we introduce the Higgs mode from a perspective of why superconductors superconduct and review the recent development in Higgs spectroscopy, particularly in the field of nonlinear terahertz spectroscopy. We discuss the novel insights that may be learnt from these studies for future high-Tc superconductivity and correlated materials research in general.
References in corpus (46)
- Inelastic Light Scattering From Correlated Electrons
- Divergent nematic susceptibility in an iron arsenide superconductor
- Higgs Amplitude Mode in BCS Superconductors NbTiN induced by Terahertz Pulse Excitation
- Amplitude / Higgs Modes in Condensed Matter Physics
- Higgs Mode in Superconductors
- Visibility of the Amplitude (Higgs) Mode in Condensed Matter
- Theory of Anderson pseudospin resonance with Higgs mode in superconductors
- Amplitude `Higgs' mode in 2H-NbSe2 Superconductor
- The Higgs Mode in Disordered Superconductors Close to a Quantum Phase Transition
- Non-linear optical effects and third-harmonic generation in superconductors: Cooper-pairs vs Higgs mode contribution
- A parity-breaking electronic nematic phase transition in the spin-orbit coupled metal CdReO
- Phase-resolved Higgs response in superconducting cuprates
- Coupling of Higgs and Leggett modes in nonequilibrium superconductors
- Polarization-resolved terahertz third-harmonic generation in a superconductor NbN: dominance of Higgs mode beyond the BCS approximation
- Direct observation of Higgs mode oscillations in the pump-probe photoemission spectra of electron-phonon mediated superconductors
- Amplitude Higgs mode and admittance in superconductors with a moving condensate
- Classification and characterization of nonequilibrium Higgs modes in unconventional superconductors
- Pressure induced collapse of the charge density wave and Higgs mode visibility in 2H-TaS
- Transient Dynamics of d-wave Superconductors after a Sudden Excitation
- Nature and Raman signatures of the Higgs amplitude mode in the coexisting superconducting and charge-density-wave state
- Non-relativistic dynamics of the amplitude (Higgs) mode in superconductors
- Infrared activation of the Higgs mode by supercurrent injection in superconducting NbN
- Quantum Coherence Tomography of Lightwave Controlled Superconductivity
- Third harmonic generation from collective modes in disordered superconductors
- Higgs-mode radiance and charge-density-wave order in 2H-NbSe
- Light Quantum Control of Persisting Higgs Modes in Iron-Based Superconductors
- Nonlinear light-Higgs coupling in superconductors beyond BCS: Effects of the retarded phonon-mediated interaction
- Polarization dependence of the third-harmonic generation in multiband superconductors
- Multiple amplitude modes in strongly-coupled phonon-mediated superconductors
- Higgs-mode resonance in third harmonic generation in NbN superconductors: multiband electron-phonon coupling, impurity scattering, and polarization-angle dependence
- Revealing novel aspects of light-matter coupling in terahertz two-dimensional coherent spectroscopy: the case of the amplitude mode in superconductors
- Non-linear Terahertz Driving of Plasma Waves in Layered Cuprates
- Band-selective third-harmonic generation in superconducting MgB: Possible evidence for Higgs amplitude mode in the dirty limit
- One-dimensional Quantum Spin Dynamics of Bethe String States
- Fano interference of the Higgs mode in cuprate high-Tc superconductors
- Theory of transverse spin dynamics in a polarized Fermi liquid and an itinerant ferromagnet
- Population inversion and dynamical phase transitions in a driven superconductor
- Kuramoto dilemma alleviated by optimizing connectivity and rationality
- Dynamical phases transitions in periodically driven Bardeen-Cooper-Schrieffer systems
- Transient Higgs oscillations and high-order nonlinear light-Higgs coupling in terahertz-wave drivenNbN superconductor
- Damping of the Collective Amplitude Mode in Superconductors with Strong Electron-Phonon Coupling
- Calculation of an enhanced A1g symmetry mode induced by Higgs oscillations in the Raman spectrum of high-temperature cuprate superconductors
- Unveiling resilient superconducting fluctuations in atomically thin NbSe through Higgs mode spectroscopy
- Long-lived Higgs modes in strongly correlated condensates
- Lattice Green's functions for kagome, diced and hyperkagome lattices
- Emergence of spatial patterns and synchronization in superconducting time crystals