Elliptically polarized terahertz radiation from a chiral oxide
Abstract
Polarization control of terahertz wave is a challenging subject in terahertz science and technology. Here, we report a simple method to control polarization state of the terahertz wave in terahertz generation process. At room temperature, terahertz radiation from a noncentrosymmetric and chiral oxide, sillenite BiGeO, is observed by the irradiation of linearly polarized femtosecond laser pulses at 800 nm. The polarization state of the emitted terahertz wave is found to be elliptic with an ellipticity of 0.370.10. Furthermore, the ellipticity was altered to a nearly zero (0.010.01) by changing the polarization of the incident linearly polarized femtosecond laser pulses. Such a terahertz radiation characteristic is attributable to variation of the polarization state of the emitted terahertz waves, which is induced by retardation due to the velocity mismatch between the incident femtosecond laser pulse and generated terahertz wave and by the polarization tilting due to the optical activity at 800 nm.
Cite
@article{arxiv.1412.2835,
title = {Elliptically polarized terahertz radiation from a chiral oxide},
author = {R. Takeda and N. Kida and M. Sotome and H. Okamoto},
journal= {arXiv preprint arXiv:1412.2835},
year = {2015}
}
Comments
23 pages including 4 figures and table