Anharmonic coherent dynamics of the soft phonon mode of a PbTe crystal
arXiv:2309.06549 · doi:10.1103/PhysRevB.108.224309
Abstract
We investigate the ultrafast optical response of PbTe to an intense single-cycle terahertz pulse, resonant with the soft transverse optical (TO) phonon mode of the crystal. We detect multifrequency oscillations of the reflectance anisotropy, which we associate with nonlinear motion of the TO phonon oscillator excited directly by the terahertz pulse. Our observation of monotonically decaying optical anisotropy together with second harmonic oscillations of the TO mode is an evidence of a transient non-centrosymmetric state of the crystal lattice that can be accompanied by the ferroelectric order. We suppose that this state is induced in the PbTe crystal by the intense terahertz pulse via alignment of the local polar nanodomains. This hypothesis is partially supported by the observation of coherent phonons near the satellite phonon mode frequency that are impulsively generated by a femtosecond laser pulse and are considerably enhanced by a synchronous terahertz pulse.
7 pages, 5 figures
References in corpus (8)
- Giant Anharmonic Phonon Scattering in PbTe
- Terahertz-Field-Induced Ferroelectricity in Quantum Paraelectric SrTiO
- Metastable ferroelectricity in optically strained
- Anharmonic phonon spectra of PbTe and SnTe in the self-consistent harmonic approximation
- Lattice dynamics reveals a local symmetry breaking in the emergent dipole phase of PbTe
- Broadband Phonon Scattering in PbTe-based Materials Driven Near the Ferroelectric Phase Transition by Strain or Alloying
- Terahertz-driven Local Dipolar Correlation in a Quantum Paraelectric
- Anomalous transverse optic phonons in SnTe and PbTe -- revisited