Mesoscopic tunneling in strontium titanate
arXiv:2203.15495 · doi:10.1103/PhysRevB.106.L140301
Abstract
Spatial correlation between atoms can generate a depletion in the energy dispersion of acoustic phonons. Two well known examples are rotons in superfluid helium and the Kohn anomaly in metals. Here we report on the observation of a large softening of the transverse acoustic mode in quantum paraelectric SrTiO by means of inelastic neutron scattering. In contrast to other known cases, this softening occurs at a tiny wave vector implying spatial correlation extending over a distance as long as 40 lattice parameters. We attribute this to the formation of mesoscopic fluctuating domains due to the coupling between local strain and quantum ferroelectric fluctuations. Thus, a hallmark of the ground state of insulating SrTiO is the emergence of hybridized optical-acoustic phonons. Mesoscopic fluctuating domains play a role in quantum tunneling, which impedes the emergence of a finite macroscopic polarisation.
Supplementary materials on request
References in corpus (8)
- Fermi surface of the most dilute superconductor
- Chirality-induced Phonon Dispersion in a Noncentrosymmetric Micropolar Crystal
- The quantum paraelectric phase of SrTiO from first principles
- Quasiparticle and Nonquasiparticle Transport in Doped Quantum Paraelectrics
- Quantum Self-Consistent Ab-Initio Lattice Dynamics
- Heavy non-degenerate electrons in doped strontium titanate
- Ferroelectric, quantum paraelectric or paraelectric? Calculating the evolution from BaTiO to SrTiO to KTaO using a single-particle quantum-mechanical description of the ions
- Quasi-isotropic orbital magnetoresistance in lightly doped SrTiO
Cited by in corpus (12)
- Anharmonic electron-phonon coupling in ultrasoft and locally disordered perovskites
- The phonon thermal Hall angle in black phosphorus
- Generalized Rashba Electron-Phonon Coupling and Superconductivity in Strontium Titanate
- Lamellar fluctuations melt ferroelectricity
- Phonon hydrodynamic regimes in sapphire
- Tunable Spatiotemporal Orders in Driven Insulators
- Phonon hydrodynamics in bulk insulators and semi-metals
- Beyond being free: glassy dynamics of SrTiO-based two-dimensional electron gas
- Modeling polar order in compressively strained SrTiO
- Electronic spin susceptibility in metallic strontium titanate
- Nanoscale Polar Landscapes in Quantum Paraelectric SrTiO3
- Effects of doping on polar order in SrTiO from first-principles modeling