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Quantitative signal analysis in pulsed resonant photoacoustics

机译:脉冲共振光声中的定量信号分析

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摘要

The pulsed excitation of acoustic resonances was studied by means of a high-Q photoacoustic resonator with different types of microphone. The signal strength of the first radial mode was calculated by the basic theory as well as by a modeling program, which takes into account the acoustic impedances of the resonator, the acoustic filter system, and the influence of the microphone coupling on the photoacoustic cavity. When the calculated signal strength is used, the high-Q system can be calibrated for trace-gas analysis without a certified gas mixture. The theoretical results were compared with measurements and show good agreement for different microphone configurations. From the measured pressure signal (in pascals per joule), the absorption coefficient of ethylene was calculated; it agreed within 10% with literature values. In addition, a Helmholtz configuration with a highly sensitive l-in. (2.54-cm) microphone was realized. Although the Q factor was reduced, the sensitivity could be increased by the Helmholtz resonator in the case of pulsed experiments. A maximum sensitivity of the coupled system of 341 mV/Pa was achieved.#1997 Optical Society of America
机译:借助于具有不同类型麦克风的高Q光声谐振器研究了声谐振的脉冲激励。第一径向模式的信号强度是通过基本理论以及通过建模程序计算的,其中考虑了谐振器的声阻抗,声学滤波器系统以及麦克风耦合对光声腔的影响。使用计算出的信号强度时,无需校准的混合气体就可以校准高Q系统进行痕量气体分析。理论结果与测量结果进行了比较,并显示了不同麦克风配置的良好一致性。根据测得的压力信号(帕斯卡/焦耳),可以计算出乙烯的吸收系数。它与文献价值相差不到10%。此外,具有高度灵敏的l-in的亥姆霍兹配置。 (2.54厘米)麦克风实现了。尽管降低了Q因子,但是在脉冲实验的情况下,亥姆霍兹谐振器可以提高灵敏度。耦合系统的最大灵敏度达到341 mV / Pa。#1997美国光学学会

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