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用于单波长光源读出的表面微机械加工光学超声换能器阵列的光学共振波长微调

Fine-Tuning of Optical Resonance Wavelength of Surface-Micromachined Optical Ultrasound Transducer Arrays for Single-Wavelength Light Source Readout.

作者信息

Yan Zhiyu, Fang Cheng, Zou Jun

机构信息

Department of Electrical and Computer Engineering, Texas A&M University, College Station, TX 77843, USA.

出版信息

Micromachines (Basel). 2024 Aug 31;15(9):1111. doi: 10.3390/mi15091111.

Abstract

This article reports the fine-tuning of the optical resonance wavelength (ORW) of surface-micromachined optical ultrasound transducer (SMOUT) arrays to enable ultrasound data readout with non-tunable interrogation light sources for photoacoustic computed tomography (PACT). Permanent ORW tuning is achieved by material deposition onto or subtraction from the top diaphragm of each element with sub-nanometer resolution. For demonstration, a SMOUT array is first fabricated, and its ORW is tuned for readout with an 808 nm laser diode (LD). Experiments are conducted to characterize the optical and acoustic performances of the elements within the center region of the SMOUT array. Two-dimensional and three-dimensional PACT (photoacoustic computed tomography) is also performed to evaluate the imaging performance of the ORW-tuned SMOUT array. The results show that the ORW tuning does not degrade the optical, acoustic, and overall imaging performances of the SMOUT elements. As a result, the fine-tuning method enables new SMOUT-based PACT systems that are low cost, compact, powerful, and even higher speed, with parallel readout capability.

摘要

本文报道了对表面微机械加工光学超声换能器(SMOUT)阵列的光学共振波长(ORW)进行微调,以便使用用于光声计算机断层扫描(PACT)的非可调谐询问光源进行超声数据读出。通过以亚纳米分辨率在每个元件的顶部膜片上沉积材料或从其去除材料来实现永久性的ORW调谐。为了进行演示,首先制作了一个SMOUT阵列,并对其ORW进行了调谐,以便使用808 nm激光二极管(LD)进行读出。进行实验以表征SMOUT阵列中心区域内元件的光学和声学性能。还进行了二维和三维PACT(光声计算机断层扫描)以评估经ORW调谐的SMOUT阵列的成像性能。结果表明,ORW调谐不会降低SMOUT元件的光学、声学和整体成像性能。因此,这种微调方法能够实现基于SMOUT的新型PACT系统,这些系统成本低、紧凑、功能强大,甚至速度更快,具有并行读出能力。

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