Near-zero-index behavior in indium antimonide revealed by phase-corrected terahertz reflection spectroscopy
Abstract
We developed a phase correction method for broadband terahertz time-domain spectroscopy in reflection geometry, which allows us to obtain quantitative and accurate values for the complex refractive index of materials. The process is analytical, based on the Kramers-Kronig relations, and does not require any computationally intensive algorithms. We validate it by extracting the refractive index of silicon, obtaining the nominal value with an accuracy better than 2.5\% over the 0.25--3.5 THz range, and better than 0.6\% in the 1--2 THz range. We use the method to experimentally observe that an undoped InSb crystal shows a refractive index of between 1 and 2 THz, in proximity to the plasma frequency of the material where, the amplitude of the group velocity goes as low as 0.08.
Keywords
Cite
@article{arxiv.2412.21073,
title = {Near-zero-index behavior in indium antimonide revealed by phase-corrected terahertz reflection spectroscopy},
author = {Kasturie D. Jatkar and Tien-Tien Yeh and Matteo Pancaldi and Stefano Bonetti},
journal= {arXiv preprint arXiv:2412.21073},
year = {2024}
}
Comments
5 pages, 4 figures