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Experimental design and numerical investigation of a photoacoustic sensor for a low-power continuous-wave laser-based frequency-domain photoacoustic microscopy

机译:用于低功率连续波基于激光的频域光声显微镜的光声传感器的实验设计和数值研究

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摘要

We have developed a photoacoustic (PA) sensor using a low-power, continuous- wave laser and a kHz-range microphone. The sensor is simple, flexible, cost-effective, and compatible with commercial optical microscopes. The sensor enables noncontact PA measurements through air, whereas most current existing PA techniques require an acoustic coupling liquid for detection. The PA sensor has three main components: one is the chamber that holds the sample, the second is a resonator column used to amplify the weak PA signals generated within the sample chamber, and the third is a microphone at the end of the resonator column to detect the amplified signals. The chamber size was designed to be as the thermal diffusion length and viscous-thermal damping of air at room pressure and temperature are 2 and 1 mm, respectively. We numerically and experimentally examined the effect of the resonator column size on the frequency response of the PA sensor. The quality factor decreased significantly when the sample chamber size was reduced from to due to thermos-viscous damping of the air. The quality factor decreased by 27%, demonstrating the need for optimal design for the sample chamber and resonator column size. The system exhibited noise equivalent molecular sensitivity (NEM) per unit bandwidth ( ) of or or 33 zeptomol, which is an improvement of 2.2 times compared to the previous system design. This PA sensor has the potential for noncontact high-resolution PA imaging of materials without the need for coupling fluids.
机译:我们已经开发出一种使用低功率连续波激光器和kHz范围麦克风的光声(PA)传感器。该传感器简单,灵活,具有成本效益,并与商用光学显微镜兼容。该传感器可通过空气进行非接触式PA测量,而大多数现有的PA技术需要使用声学耦合液进行检测。 PA传感器具有三个主要组成部分:一个是容纳样品的腔室,第二个是用于放大样品腔室内产生的微弱PA信号的谐振器列,第三个是谐振器列末端的麦克风,用于检测放大的信号。腔室的尺寸设计为在室温和室温下空气的热扩散长度和粘热阻尼分别为2和1mm。我们在数值上和实验上检查了谐振器列尺寸对PA传感器频率响应的影响。当样品室尺寸从减小到到到由于空气的热-粘阻尼而导致的质量因子显着下降时。品质因数降低了27%,这表明需要针对样品室和谐振器柱尺寸进行最佳设计。该系统在每单位带宽()或33 zeptomol上具有噪声等效分子灵敏度(NEM),与以前的系统设计相比,提高了2.2倍。该PA传感器具有非接触式高分辨率PA成像材料的潜力,而无需耦合流体。

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