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Updated: Feb 4, 2026

High Resolution Phonon-assisted Quasi-resonance Fluorescence Spectroscopy
Published on: June 28, 2016
Generative adversarial networks-enhanced quasi-square wave modulated photoacoustic spectroscopy: A highly sensitive
Yanfeng Li1, Xueshi Zhang1, Lixian Liu1,2
1School of Optoelectronic Engineering, State Key Laboratory of Electromechanical Integrated Manufacturing of High-performance Electronic Equipment, Xidian University, Xi'an 710071, China.
Abstract:
We present a photoacoustic spectroscopy reconstruction generative adversarial network (PASR-GAN), which boosts the NH3 detection performance of the photoacoustic spectroscopy sensor through collaborative optimization of the light modulation mode, especially under strong background noise. Instead of a sinusoidal wave, a quasi-square wave is used as the modulation waveform due to its higher signal excitation efficiency, achieving a 37 % signal enhancement. PASR-GAN suppresses noise and reconstructs corresponding clean signals by establishing a nonlinear mapping between noisy and clean signals, overcoming the limitations of traditional algorithms that rely on prior assumptions and are difficult to eliminate complex noises. For inherent noise and sudden noise, PASR-GAN exhibits 7.5 times and 172 times noise reduction, respectively. A detection limit of 32.44 ppb and a 0.99999 linear coefficient of determination within the 0-1000 ppm range demonstrate the concentration prediction capability of PASR-GAN. PASR-GAN provides a robust, data-driven approach for signal reconstruction under complex noise environments.
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