Baac Hyoung Won, Ling Tao, Ashkenazi Shai, Huang Sheng-Wen, Guo L Jay
Dept. of Electrical Engineering and Computer Science, University of Michigan, Ann Arbor, MI 48109 USA.
Proc SPIE Int Soc Opt Eng. 2010 Feb 11;7564(1):75642M. doi: 10.1117/12.841089.
We present a photo-acoustic concave transmitter to generate and subsequently focus high frequency ultrasound. Owing to a short time-duration of pulse laser beam, high frequency acoustic waves and tight focusing can be easily achieved. The transmitter consists of a light-absorbing film coated on a concave spherical structure. For detection, we used an optical microring ultrasound detector capable of covering a broadband and high frequency spectrum of photo-acoustic source. A spot width of ∼44 μm was obtained at the focal plane. As the finite size and the specific shape of the microring cause a geometrical effect on the detection process, especially for high frequency components, we performed a 2-D spatial signal processing to remove this effect and extract a pure pressure distribution. The aperture for acoustic focusing could be optically controlled by changing the size of pulse laser beam.
我们展示了一种光声凹面发射器,用于产生并随后聚焦高频超声。由于脉冲激光束的持续时间短,高频声波和紧密聚焦很容易实现。该发射器由涂覆在凹面球形结构上的吸光膜组成。为了进行检测,我们使用了一种光学微环超声探测器,它能够覆盖光声源的宽带和高频频谱。在焦平面处获得了约44μm的光斑宽度。由于微环的有限尺寸和特定形状在检测过程中会产生几何效应,特别是对于高频分量,我们进行了二维空间信号处理以消除这种效应并提取纯压力分布。可以通过改变脉冲激光束的大小来光学控制声学聚焦的孔径。