paper

Transient photon echoes from donor-bound excitons in ZnO epitaxial layers

arXiv:1702.05057 · doi:10.1103/PhysRevB.96.035203

Abstract

The coherent optical response from 140~nm and 65~nm thick ZnO epitaxial layers is studied using transient four-wave-mixing spectroscopy with picosecond temporal resolution. Resonant excitation of neutral donor-bound excitons results in two-pulse and three-pulse photon echoes. For the donor-bound A exciton (DX) at temperature of 1.8~K we evaluate optical coherence times ~ps corresponding to homogeneous linewidths of eV, about two orders of magnitude smaller as compared with the inhomogeneous broadening of the optical transitions. The coherent dynamics is determined mainly by the population decay with time ~ps, while pure dephasing is negligible in the studied high quality samples even for strong optical excitation. Temperature increase leads to a significant shortening of due to interaction with acoustic phonons. In contrast, the loss of coherence of the donor-bound B exciton (DX) is significantly faster (~ps) and governed by pure dephasing processes.

4 figures, 5 pages