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Imaging in diffuse media with pulsed-ultrasound-modulated light and the photorefractive effect

机译:脉冲超声调制光在扩散介质中的成像和光折变效应

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Acousto-optic imaging in diffuse media is a dual wave-sensing technique in which an acoustic field interacts with multiply scattered laser light. The acoustic field causes a phase modulation in the optical field emanating from the interaction region, and this phase-modulated optical field carries with it information about the local optomechanical properties of the media. We report on the use of a pulsed ultrasound transducer to modulate the optical field and the use of a photorefractive-crystal-based interferometry system to detect ultrasound-modulated light. The use of short pulses of focused ultrasound allows for a one-dimensional acousto-optic image to be obtained along the transducer axis from a single, time-averaged acousto-optic signal. The axial and lateral resolutions of the system are controlled by the spatial pulse length and width of the ultrasound beam, respectively. In addition, scanning the ultrasound transducer in one dimension yields two-dimensional images of optical inhomogeneities buried in turbid media. (c) 2005 Optical Society of America.
机译:扩散介质中的声光成像是一种双波传感技术,其中声场与多重散射的激光相互作用。声场引起从相互作用区域发出的光场中的相位调制,并且该相位调制的光场携带有关介质的局部光机械特性的信息。我们报告了使用脉冲超声换能器调制光场以及使用基于光折射晶体的干涉仪系统检测超声调制光的报告。使用聚焦超声的短脉冲可以从单个时间平均的声光信号沿换能器轴获得一维声光图像。系统的轴向和横向分辨率分别由超声波束的空间脉冲长度和宽度控制。另外,以一维扫描超声换能器可得到掩埋在混浊介质中的光学不均匀性的二维图像。 (c)2005年美国眼镜学会。

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