English

High-field electron transport in bulk ZnO

Materials Science 2016-05-31 v1

Abstract

Current-voltage dependence is measured in (Ga,Sb)-doped ZnO up to 150 kV/cm electric fields. A channel temperature is controlled by applying relatively short (few ns) voltage pulses to two-terminal samples. The dependence of electron drift velocity on electron density ranging from 1.42×\times1017^{17} cm3^{-3} to 1.3×\times1020^{20} cm3^{-3} at a given electric field is deduced after estimation of the sample contact resistance and the Hall electron mobility. Manifestation of the highest electron drift velocity up to \sim1.5×\times107^{7} cm/s is estimated for electron density of 1.42×\times1017^{17} cm3^{-3} and is in agreement with Monte Carlo simulation when hot-phonon lifetime is below 1 ps. A local drift velocity maximum is observed at \sim1.1×\times1019^{19} cm3^{-3} and is in agreement with ultra-fast hot phonon decay.

Keywords

Cite

@article{arxiv.1605.09117,
  title  = {High-field electron transport in bulk ZnO},
  author = {L. Ardaravičius and J. Liberis and M. Ramonas and E. Šermukšnis and A. Matulionis and M. Toporkov and V. Avrutin and Ü. Özgür and H. Morkoç},
  journal= {arXiv preprint arXiv:1605.09117},
  year   = {2016}
}

Comments

9 pages, 4 figures, 1 table