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Updated: Aug 10, 2026

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Three-dimensional Optical-resolution Photoacoustic Microscopy
Published on: May 3, 2011
Analysis of photoacoustic waveforms using the nonlinear least squares method
J R Small1, L J Libertini, E W Small
1Department of Chemistry and Biochemistry, Eastern Washington University, Cheney 99004.
Biophysical Chemistry
|January 1, 1992
Summary
This study introduces a novel quadratic-fit convolution method for analyzing pulsed-laser photoacoustic data, improving the analysis of transient decay times. This new approach enhances the resolution capabilities of photoacoustic spectroscopy for chemical systems.
Area of Science:
- Analytical Chemistry
- Physical Chemistry
- Spectroscopy
Background:
- Pulsed-laser photoacoustics measures nanoscale enthalpic and volumetric changes.
- Analyzing photoacoustic data typically involves deconvolution for exponential decay sums.
- Existing methods, adapted from fluorescence, require significant modifications for photoacoustics due to wide decay time ranges.
Purpose of the Study:
- To develop an improved numerical method for analyzing photoacoustic data with complex exponential decays.
- To overcome limitations of approximation methods like Simpson's rule in convolution integrals.
- To compare the resolution of different transducers using the new method.
Main Methods:
- Developed a novel quadratic-fit convolution program for direct evaluation of convolution integrals.
- Constructed a continuous instrumental response function by quadratic fitting of discrete data.
- Applied the program to simulated and experimental data, including a benzophenone photochemical system.
Main Results:
- The quadratic-fit convolution method successfully addresses wide ranges of transient decay times.
- Demonstrated the program's success and limitations using simulated data.
- Experimental data analysis showed advantages of a broadband, heavily damped transducer for improved resolution.
Conclusions:
- The developed quadratic-fit convolution program offers a more robust approach to photoacoustic data analysis.
- This method enhances the ability to resolve fast transient processes in photoacoustic spectroscopy.
- The study highlights the importance of transducer characteristics in achieving high-resolution photoacoustic measurements.
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