Molecular Crystals and Liquid Crystals, Vol.619, No.1, 49-60, 2015
An ADE-FDTD Formulation for the Study of Liquid-Crystal Components in the Terahertz Spectrum
An anisotropic auxiliary differential equation finite-difference time-domain formulation is presented in detail for the time-domain study of nematic liquid crystal devices in the terahertz spectrum. The termination of the computation domain is achieved by employing a properly designed convolution perfectly matched layer. The material dispersion and dichroism of the LC complex permittivities is modeled via a modified Lorentzian function that is demonstrated to provide an accurate description for a series of state-of-the-art materials used in LC-THz technology.
Keywords:Finite-difference time-domain (FDTD) method;auxiliary differential equations;perfectly matched layer;anisotropic media;dispersive media;liquid crystals;terahertz technology