Title :
A Simple Transfer-Function-Based Approach for Estimating Material Parameters From Terahertz Time-Domain Data
Author :
Tych, K.M. ; Wood, Charles D. ; Tych, W.
Author_Institution :
Sch. of Phys. & Astron., Univ. of Leeds, Leeds, UK
Abstract :
A novel parametrically efficient approach to estimating the spectra of short transient signals is proposed and evaluated, with an application to estimating material properties, including complex refractive index and absorption coefficient, in the terahertz frequency range. This technique includes uncertainty analysis of the obtained spectral estimates, allowing rigorous statistical comparison between samples. In the proposed approach, a simple few-parameter continuous-time transfer function model explains over 99.9% of the measured signal. The problem, normally solved using poorly numerically defined Fourier transform deconvolution methods, is reformulated and cast as a time-domain dynamic-system estimation problem, thus providing a true time-domain spectroscopy tool.
Keywords :
Fourier transform optics; measurement uncertainty; optical transfer function; refractive index; terahertz wave detectors; Fourier transform deconvolution methods; absorption coefficient; complex refractive index; continuous-time transfer function model; material properties; short transient signals; simple transfer-function-based approach; spectral estimates; terahertz time-domain data; time-domain dynamic-system estimation problem; time-domain spectroscopy; uncertainty analysis; Estimation; Frequency-domain analysis; Materials; Mathematical model; Time-domain analysis; Transfer functions; Uncertainty; Terahertz; modeling; novel methods; terahertz sensing;
Journal_Title :
Photonics Journal, IEEE
DOI :
10.1109/JPHOT.2013.2292337