Hybrid plasmon-phonon excitation in SrTi<sub>1-x</sub>Nb<sub>x</sub>O<sub>3</sub>
ORAL
Abstract
SrTi1-xNbxO3 is known to be one of the most dilute superconductors with properties paralleling copper-oxides. It has perplexing optical properties, including an anomalously broad plasma edge that decreases in frequency with increasing temperature. Here we present a momentum-resolved electron energy loss spectroscopy (M-EELS) study of plasmon excitations in the normal state of SrTi1-xNbxO3 (x=0, 0.002, 0.01, 0.014). Measurements at large momentum transfer of the undoped insulating sample, SrTiO3, reveal a multiphonon continuum typical of anharmonic insulators. As electrons are added via doping, this spectral weight does not form a simple plasmon, but rather becomes enhanced and shifts to slightly higher energy. Doping makes the continuum stronger and visible over a wider range of momentum, all the way down to zero momentum. We identify this mode, which has been identified in optics as a plasmon, as a hybrid excitation of doped carriers mixed with an anharmonic phonon continuum.
*This work was supported by the QSQM, a DOE EFRC, under DOE grant DE-SC0021238. P.A. acknowledges support from Gordon and Betty Moore Foundation EPiQS grant GBMF9452.
–
Presenters
-
Caitlin S Kengle
- University of Illinois at Urbana-Champaign
- University of Illinois at Urbana-Champai