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Exploring a photo-acousto-optic effect for noncontacting photoacoustic sensing

机译:探索非接触光声传感的光声效应

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摘要

To avoid the use of ultrasound transducers and coupling gel in photoacoustic microscopy (PAM), we propose photo-acousto-optic tomography (PAOT) for noncontact photoacoustic (PA) sensing. The process consists of two parts. The first portion is the same as typical PAM, which employs a pulsed laser to induce acoustic waves. The difference from typical methods lies in the second part of the process, which applies a DC beam, rather than a conventional transducer, to sense the PA signal. A two-beam optical microscope system was designed to verify the PAOT effect, whereby an AC spot acted as the source to induce a PA signal, while a DC beam is applied to induce the acousto-optic effect for detection of the acoustic wave. We demonstrated the preliminary result that 5-100 Hz AC radiation could derive PA waves in a water-like medium along with detection sensitivity as high as 4.9%-10.0%; besides, the signal waveform could be detected by a DC spot 10-100 μm away for noncontact sensing with detection sensitivity of about 3.7%-10.4%. Without the need for a transducer or coupling gel, PAOT has the potential to modify conventional PAM into a pure optical system, which could make PA imaging more promising in practical applications.
机译:为避免在光声显微镜(PAM)中使用超声换能器和耦合凝胶,我们建议使用光声光层析成像(PAOT)进行非接触式光声(PA)传感。该过程包括两个部分。第一部分与典型的PAM相同,后者采用脉冲激光感应声波。与典型方法的不同之处在于该过程的第二部分,该过程施加DC束而不是传统的换能器来感测PA信号。设计了两束光学显微镜系统以验证PAOT效果,其中AC点充当感应PA信号的源,而DC束施加感应声波以检测声波。我们证明了初步结果,即5-100 Hz交流辐射可以在水样介质中产生PA波,检测灵敏度高达4.9%-10.0%。此外,该信号波形可以在10-100μm以外的DC点进行非接触式感应,探测灵敏度约为3.7%-10.4%。不需要换能器或耦合凝胶,PAOT就有可能将传统的PAM修改为纯光学系统,这可能使PA成像在实际应用中更有希望。

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