English

Coupling of Surface Acoustic Waves to a Two Dimensional Electron Gas

Condensed Matter 2009-10-28 v1

Abstract

When a surface acoustic wave (SAW) is coupled piezoelectrically to a two dimensional electron gas (2DEG), a velocity shift and attenuation of the SAW are induced that reflect the conductivity of the 2DEG. This paper considers the case of a AlGaAs heterostructure with a 2DEG a distance dd from a (100) surface of the crystal where the SAWs are propagated in the [011] direction at wavevector qq. It is found that the velocity shift Δvs\Delta v_s and the attenuation coefficient κ\kappa satisfy the well known equation (Δvs/vs)(iκ/q)=(α2/2)/(1+iσxx(q,ω)σm)(\Delta v_s/v_s) - (i \kappa/q) = (\alpha^2/2)/\left(1 + \frac{i \sigma_{xx}(q,\omega)} {\sigma_m}\right) where σxx(q,ω)\sigma_{xx}(q,\omega) is the complex conductivity at wavevector qq and frequency ω=vsq\omega = v_s q with vsv_s the velocity of the SAW. The coefficients α\alpha and σm\sigma_m are calculated and it is found that α\alpha has a nontrivial dependence on the product qdqd.

Keywords

Cite

@article{arxiv.cond-mat/9605033,
  title  = {Coupling of Surface Acoustic Waves to a Two Dimensional Electron Gas},
  author = {Steven H. Simon},
  journal= {arXiv preprint arXiv:cond-mat/9605033},
  year   = {2009}
}

Comments

7 pages, RevTeX, 2 figures