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METHOD AND APPARATUS FOR OPTICAL SECTIONING AND IMAGING USING TIME- GATED PARAMETRIC IMAGE AMPLIFICATION

机译:使用时间门限参数图像放大技术进行光学切片和成像的方法和装置

摘要

An optical parametric amplifier pumped by ultrashort optical pulses provides time-gated image amplification or time-gated image frequency conversion, resulting in optical sectioning of an object under test and/or background rejection of improperly timed light. An ultrashort laser pulse of one frequency is used to illuminate an object under test. An ultrashort pulse light beam at a signal frequency transmitted through or scattered from the object is optically mixed with an ultrashort laser pulse at a pump frequency in a nonlinear optical medium. This mixing produces an amplified image of a particular optical section of the object at the signal frequency in addition to producing a frequency converted image of the same optical section at an idler frequency. This time-gated amplification can be used in conjunction with a confocal imaging system, or a conventional imaging system. The resolution of optical sectioning is determined by the temporal widths of the signal and pump pulses and by the group velocity walkoff in the nonlinear medium. By illuminating the target with a train of closely spaced ultrashort pulses, an image of multiple sections can be amplified and downconverted within a single laser shot, giving a contour image of the target. The signal light can also be fluorescence from the object, excited by a short laser pulse, either through single-photon or multi-photon absorption. In this case, the signal light is incoherent with respect to the pump light. By using quasi-phase-matched nonlinear optical crystals as the amplifying medium, advantages such as an increased acceptance angle and lower pump thresholds are obtained.
机译:由超短光脉冲泵浦的光学参量放大器提供时间选通的图像放大或时间选通的图像频率转换,从而导致对被测对象进行光学切片和/或对不适当定时的光进行背景抑制。一种频率的超短激光脉冲用于照亮被测物体。在非线性光学介质中,以穿过或从物体散射的信号频率的超短脉冲光束与以泵浦频率的超短激光脉冲光学混合。这种混合除了以惰轮频率产生相同光学部分的频率转换图像之外,还以信号频率产生对象的特定光学部分的放大图像。该时间门控放大可以与共焦成像系统或常规成像系统结合使用。光学切片的分辨率取决于信号和泵浦脉冲的时间宽度以及非线性介质中的群速度偏移。通过用间隔很近的超短脉冲序列照亮目标,可以在一次激光照射中放大和下转换多个部分的图像,从而给出目标的轮廓图像。信号光也可以是来自对象的荧光,通过单光子吸收或多光子吸收,由短激光脉冲激发。在这种情况下,信号光相对于泵浦光是不相干的。通过使用准相位匹配的非线性光学晶体作为放大介质,可以获得诸如增大的接收角和较低的泵浦阈值的优点。

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