EXPRESS: Development of dynamic time-over-threshold method for signal processing in cavity ring-down spectroscopy

Cavity ring-down spectroscopy (CRDS) enables highly sensitive detection of trace gases but typically requires high-speed, high-resolution digitizers for exponential fitting of the measured “ring-down” decay signals. This work investigates a simplified signal processing approach based on the Time-over-Threshold (ToT) method, using only threshold crossing times instead of full waveform acquisition. In contrast to the ToT method with static thresholds, dynamic threshold signals are employed to improve linearity and robustness with respect to signal amplitude variations. The proposed dynamic ToT method is implemented using a compact analog circuit and evaluated using a mid-infrared CRDS setup for CO 2 measurement. Experimental results demonstrate good agreement with conventional fitting, with improved reliability compared to the ToT method with static thresholds and comparable linearity over a broad range of ring-down decay rates. These findings establish the dynamic ToT method as an accessible and scalable alternative for acquiring decay data in CRDS, particularly suited for simultaneous multi-channel or multi-wavelength measurements.

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Publication Details

Journal
Applied Spectroscopy
Published
2026-09-04
DOI
https://doi.org/10.1177/00037028261486533
Primary Topic
Spectroscopy and Laser Applications
Type
article
Field-Weighted Citation Impact
0.00

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article

EXPRESS: Development of dynamic time-over-threshold method for signal processing in cavity ring-down spectroscopy

典彦 西澤, Ryohei Terabayashi, Hideki Tomita, K. Wendt et al.
Applied Spectroscopy
Spectroscopy and Laser Applications
article

EXPRESS: Development of dynamic time-over-threshold method for signal processing in cavity ring-down spectroscopy

典彦 西澤, Ryohei Terabayashi, Hideki Tomita, K. Wendt, Erik Thiel, Takumi Mochizuki, Konrad Kleineidam, Kenji Shimazoe
article en

Abstract

Cavity ring-down spectroscopy (CRDS) enables highly sensitive detection of trace gases but typically requires high-speed, high-resolution digitizers for exponential fitting of the measured “ring-down” decay signals. This work investigates a simplified signal processing approach based on the Time-over-Threshold (ToT) method, using only threshold crossing times instead of full waveform acquisition. In contrast to the ToT method with static thresholds, dynamic threshold signals are employed to improve linearity and robustness with respect to signal amplitude variations. The proposed dynamic ToT method is implemented using a compact analog circuit and evaluated using a mid-infrared CRDS setup for CO 2 measurement. Experimental results demonstrate good agreement with conventional fitting, with improved reliability compared to the ToT method with static thresholds and comparable linearity over a broad range of ring-down decay rates. These findings establish the dynamic ToT method as an accessible and scalable alternative for acquiring decay data in CRDS, particularly suited for simultaneous multi-channel or multi-wavelength measurements.

Applied Spectroscopy
Johannes Gutenberg University Mainz (DE), Nagoya University of Arts (JP), The University of Tokyo (JP)
Japan Society for the Promotion of Science, Core Research for Evolutional Science and Technology
Openalex Percentile: Top 21%
Spectroscopy and Laser Applications
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EXPRESS: Development of dynamic time-over-threshold method for signal processing in cavity ring-down spectroscopy — 典彦 西澤, Ryohei Terabayashi, et al. · Applied Spectroscopy (2026) | TGRS Research Map | TGRS