English

New terahertz dielectric spectroscopy for the study aqueous solutions

Biological Physics 2016-01-20 v1 Instrumentation and Detectors

Abstract

We present a development of a high precision, tunable far-infrared (terahertz) frequency-domain dielectric spectrometer for studying the dynamics of biomolecules in aqueous solutions in the gigahertz-to-terahertz frequency. As a first application we report on the measurement of the absorption and refractive index for liquid water in the frequency range from 5 GHz to 1.12 THz (0.17 to 37.36 cm-1 or 0.268 to 60 mm). The system provides a coherent radiation source with a power up to 20 mW in the gigahertz-to-terahertz region. The power signal-to-noise ratio of our instrument reaches 1015 and the system achieves a spectral resolution of less than 100 Hz. The temperature of samples can be controlled precisely with an error bars of 0.02 oC from above 0 oC to 90 oC. Given these attributes, our spectrometer provides unique capabilities for the accurate measurement of even very strongly absorbing materials such as aqueous solutions.

Keywords

Cite

@article{arxiv.1507.05322,
  title  = {New terahertz dielectric spectroscopy for the study aqueous solutions},
  author = {Deepu K. George and Ali Charkhesht and N. Q. Vinh},
  journal= {arXiv preprint arXiv:1507.05322},
  year   = {2016}
}
R2 v1 2026-06-22T10:14:40.614Z