THz spectroscopy techniques for water gradient quantification
Paper i proceeding, 2022

Understanding depth dependent hydration, or gradients, is important for a wide range of applications from paper manufacturing to biological tissue imaging. However, in situ characterization, especially in a non-destructive, reflective measurement is difficult in practice. Moreover, uncontrolled sample drying, water migration, and surface warping create significant challenges towards experimental testing. In this work we show a simple scenario with a standard cleanroom wipe of around 350μm thickness being exposed to water and left for complete drying, while its reflectivity together with changing mass data were recorded. The reflectivity was measured using VNA-based quasioptical system. High dynamic range, frequency domain measurements show a non-trivial frequency dependence on reflectivity that cannot be explained by aqueous dispersion alone. Further, the measurements reveal complicated drying dynamics where broadband reflectionless behavior was observed even when the sample was still ~50% water by mass. These investigations are an important step towards model model-free based analysis of spectra that should provide direct extraction of water at depth.

Författare

Irina Nefedova

Aalto-Yliopisto

Chalmers, Mikroteknologi och nanovetenskap, Terahertz- och millimetervågsteknik

Aleksi Tamminen

Aalto-Yliopisto

Helena Rodilla

Chalmers, Mikroteknologi och nanovetenskap, Terahertz- och millimetervågsteknik

Jan Stake

Chalmers, Mikroteknologi och nanovetenskap, Terahertz- och millimetervågsteknik

Emma MacPherson

The University of Warwick

Zachary Taylor

Aalto-Yliopisto

International Conference on Infrared, Millimeter, and Terahertz Waves, IRMMW-THz

21622027 (ISSN) 21622035 (eISSN)

Vol. 2022-August
9781728194271 (ISBN)

47th International Conference on Infrared, Millimeter and Terahertz Waves, IRMMW-THz 2022
Delft, Netherlands,

Ämneskategorier

Medicinsk laboratorie- och mätteknik

Analytisk kemi

Oceanografi, hydrologi, vattenresurser

DOI

10.1109/IRMMW-THz50927.2022.9895787

Mer information

Senast uppdaterat

2023-10-26