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We introduce a method for estimating the permittivity of liquid samples measured using integrated microfluidic/planar Goubau line terahertz waveguides, in which simulation results are combined with practical data to enable more accurate frequency-dependent analysis.
Broadband time-domain spectroscopy was used to measure the terahertz frequency absorption of protein single crystals in order to study global protein dynamics. Temperature dependent dynamics were measured for lysozyme, and the terahertz frequency spectrum of mouse urinary protein was compared to calculated spectra.
We demonstrate optimization of planar terahertz (THz) frequency Goubau lines to achieve a ∼ 2 THz bandwidth. This has allowed high resolution, on-chip THz spectra of polycrystalline materials to be recorded over temperatures ranging from 4–292 K.
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