Maxwell Adam, Huang Sheng-Wen, Ling Tao, Kim Jin-Sung, Ashkenazi Shai, Guo L Jay
A. Maxwell, T. Ling, J.-S. Kim and L. J. Guo are with the Department of Electrical Engineering and Computer Science at the University of Michigan, Ann Arbor, MI 48109 USA (Email:
IEEE J Sel Top Quantum Electron. 2008 Jan;14(1):191-197. doi: 10.1109/JSTQE.2007.914047.
Polymer microring resonators fabricated by nanoimprinting are presented as a means of ultrasound detection. Acoustic waves impinging on a ring-shaped optical resonator cause strain in the ring dimensions, modulating optical output. Basic acoustic and optical characteristics of the microring sensor are presented. Measurements at several frequencies show a high sensitivity and low noise-equivalent pressure. The angular response is determined by sensing the optoacoustic excitation of a 49 μm polyester microsphere and shows wide-angle sensitivity. A 1-D array consisting of 4 microrings is demonstrated using wavelength multiplexing for addressing each element. The high sensitivity, bandwidth, and angular response make it a potentially useful sensor platform for many applications including high-frequency ultrasonic and photoacoustic imaging.
通过纳米压印制造的聚合物微环谐振器被用作一种超声检测手段。撞击在环形光学谐振器上的声波会导致环尺寸发生应变,从而调制光输出。文中介绍了微环传感器的基本声学和光学特性。在几个频率下的测量结果显示出高灵敏度和低等效噪声压力。通过检测49μm聚酯微球的光声激发来确定角度响应,并显示出广角灵敏度。利用波长复用对由4个微环组成的一维阵列中的每个元件进行寻址。这种高灵敏度、带宽和角度响应使其成为许多应用(包括高频超声和光声成像)中潜在有用的传感器平台。