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Cornelia Reitböck

Publications and source records attributed to Cornelia Reitböck.

2 recordsLinked to original sources

Bulk dipole contribution to second harmonic generation in diamond lattices

It is generally argued that material classes with inversion symmetry do not produce bulk dipole related second harmonic generation (SHG). So, SHG is then either ascribed to surface effects or bulk related electric quadrupole or magnetic dipole effects. Using symmetry and \emph{ab-initio} potentials we show analytically that due to the fact of the decaying harmonic electric field certain diamond crystal orientations, as e.g. Si(111), produce a bulk dipole SHG response. For fcc and bcc lattices with a single atom basis, i.e. for the most important metals, however, SHG can purely arise due to the disturbance induced by the surface. Finally we propose an experiment, exploiting the different dispersion for the fundamental as well as frequency doubled radiation to determine this effect.

physics.optics

Bond Model and Group Theory of Second Harmonic Generation in GaAs(001)

A comprehensive analysis of second harmonic generation (SHG) in a diatomic zincblende crystal based on the Simplified Bond Hyperpolarizability Model (SBHM), Group Theory (GT) is presented. The third rank tensor between the two approaches are compared and applied to reproduce rotational anisotropy (RA) SHG experimental result.It is well known that such a crystal is noncentrosymmetric, therefore the second harmonic generation source is dominated by bulk dipoles with a SHG polarization $P_{BD}=χ_{ijk}^{(2)}E(ω)E(ω)$. We show that the SBHM previously applied to mono crystal system such as Silicon can also be applied to an atomic cell containing two different atoms e.g. GaAs by introducing an effective hyperpolarizability $α_{2GaAs}=\left(α_{2Ga}-α_{2As}\right)$ . Comparison with GT yields the same third rank tensor for a $T_d$ point group corresponding to bulk tetrahedral structure. Interestingly, SBHM gives good agreement with RASHG experiment of GaAs using only one single fitting parameter when Fresnel analysis is also incorporated in the model.

cond-mat.mtrl-sci