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Theoretical and experimental studies of distance dependent response of micro-ring resonator-based ultrasonic detectors for photoacoustic microscopy

机译:基于微环谐振器的光声显微镜超声波探测器的距离相关响应的理论和实验研究

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摘要

We present in this paper a systematic study of the distance dependent detection characteristics of the newly developed micro-ring resonator (MRR)-based ultrasonic detector for photoacoustic microscopy (PAM). A simple analytic model was first developed to study the steady-state response to the continuous ultrasonic waves. While placing the MRR detector at the acoustic far-field provides longer working distance and broader field of view, the detection at acoustic near-field offers the improved sensitivity and broader bandwidth but at the cost of reduction in the field of view. Furthermore, a numerical model was developed to analyze the transient response to the photoacoustic-induced impulsive waves. Notably, far-field detection exhibits a flat wavefront of its response pattern in the time domain while large distortions are clearly visible in the case of near-field detection. Finally, both analytic and numerical models are validated by experimental studies. This work establishes a theoretical framework for quantitatively analyzing the trade-offs between near-field and far-field detection using MRR detector, creating a guideline for optimizing the PAM for various applications in biomedical imaging and diagnostics.
机译:我们目前在本文中对新开发的基于微环谐振器(MRR)的用于光声显微镜(PAM)的超声波检测器的距离相关检测特性进行系统研究。首先开发了一个简单的分析模型来研究对连续超声波的稳态响应。虽然将MRR检测器放置在声场中可提供更长的工作距离和更宽的视野,但在声场中进行检测可提供更高的灵敏度和更宽的带宽,但以降低视野为代价。此外,建立了一个数值模型来分析对光声诱发的脉冲波的瞬态响应。值得注意的是,远场检测在时域中显示出其响应模式的平坦波前,而在近场检测的情况下,清晰可见大失真。最后,通过实验研究验证了解析模型和数值模型。这项工作为定量分析使用MRR检测器的近场和远场检测之间的权衡关系建立了理论框架,为优化PAM在生物医学成像和诊​​断中的各种应用创建了指南。

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