4.7 Article

Terahertz Coherence Tomography for In-Container Liquid Characterization

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/JSTQE.2023.3294875

关键词

Tomography; Coherence; Time-domain analysis; Refractive index; Containers; Lenses; Time-frequency analysis; Non-destructive evaluation; OCT; terahertz

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For on-site measurements, compact electronic-based terahertz systems may replace large and expensive conventional terahertz pulse time domain systems. However, the detection of phase in received signals by common electronic detectors complicates the characterization of multilayer samples. In this study, we propose a practical method using swept-source terahertz coherence tomography in reflection configuration for the characterization of in-container liquid samples.
For on-site measurements, large, expensive, conventional terahertz pulse time domain systems for non-destructive evaluation will potentially superseded by compact electronic-based terahertz systems. However, common electronic detectors are not capable of detecting the phase of received signals, complicating the characterization of multilayer samples. We propose a practical method for the characterization of in-container liquid samples using swept-source terahertz coherence tomography in reflection configuration. We demonstrate this technique in the 220-330 GHz frequency band to quantify the principle components of common alcoholic beverages, namely, water, sugar, and ethanol, with sensitivity to ethanol concentration below 0.4%v/v, whilst simultaneously recovering information about the container. Additionally, the method allows real-time observation of dilution in the mixtures. The proposed method facilitates measurement with significantly reduced experimental overhead and critically, is compatible with incoherent terahertz cameras for quantitative imaging.

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