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    • 2. 发明授权
    • Two-mirror figure “8” ring resonantor
    • 双镜像“8”环形谐振器
    • US06570904B1
    • 2003-05-27
    • US09475004
    • 1999-12-30
    • Huy-Zu ChengSheng-Lung HuangWood-Hi ChengFu-Jen KaoInn-Chyn HerPi-Ling Huang
    • Huy-Zu ChengSheng-Lung HuangWood-Hi ChengFu-Jen KaoInn-Chyn HerPi-Ling Huang
    • H01S3081
    • H01S3/08H01S3/0813H01S3/09415H01S3/109
    • The cavity of the invention has a pumping source, a ring cavity, a planar convex lens, an optical gain medium, and/or a nonlinear medium. The laser cavity is formed by two mirrors with the same curvature. The curving surfaces of the two mirrors are coupled by a manner of face to face, whereby a space is defined as the ring cavity. The planar-convex lens is located between the pump beam and the ring cavity to work together with the two mirrors of the ring cavity to focus the pump beam. The pumping light enters the ring cavity at a desired distance of d mm from the mirror axis. The laser light also enters the ring cavity in a propagating direction nearly parallel to the mirror axis. Due to the two curving surfaces of the two mirrors, the light beam is reflected back and forth to form the 3-D figure-“8” light path. The optical gain medium and the nonlinear medium are located between the two mirrors on the light path. The optical gain material is used for generating the laser beam, and the nonlinear medium is used to do secondary harmonic generation so as to convert the laser light to a shorter wavelength.
    • 本发明的腔体具有泵浦源,环形腔,平面凸透镜,光学增益介质和/或非线性介质。 激光腔由具有相同曲率的两个反射镜形成。 两个反射镜的弯曲表面通过面对面的方式联接,由此将空间定义为环形空腔。 平面凸透镜位于泵浦光束和环形空腔之间,与环形空腔的两个反射镜一起工作以聚焦泵浦光束。 泵浦光以距离镜轴为dmm的期望距离进入环形空腔。 激光也沿着几乎平行于镜像轴的传播方向进入环形空腔。 由于两个反射镜的两个弯曲表面,光束被来回反射以形成3-D图形“8”光路。 光学增益介质和非线性介质位于光路上的两个反射镜之间。 光学增益材料用于产生激光束,非线性介质用于进行二次谐波生成,以将激光转换成较短的波长。
    • 4. 发明授权
    • Optical imaging apparatus and method
    • 光学成像设备及方法
    • US08493568B2
    • 2013-07-23
    • US12497986
    • 2009-07-06
    • Yu-Ta WangPo-Kai HsuKuang-Yu HsuDong-Yo JhengChien-Chung TsaiSheng-Lung Huang
    • Yu-Ta WangPo-Kai HsuKuang-Yu HsuDong-Yo JhengChien-Chung TsaiSheng-Lung Huang
    • G01B11/02
    • G01B9/02022G01B9/02065G01B9/02091G01B2290/35G01B2290/45
    • The present invention relates to an optical imaging apparatus and a method, and more particularly to an optical imaging apparatus and a method with short coherence length optical source. The apparatus comprises an optical source with a plurality of outputs for providing a reference light and a sample light; a sample probe module for leading the sample light to a sample, and leading an information light out; an interference module for leading the reference light to a photo detector, and leading the information light to the photo detector; and a signal processing unit electrically coupled to the photo detector; wherein the reference light and the information light are superimposed on the photo detector, an interference light pattern is detected by the photo detector, and a signal that represents the interference light pattern is transmitted to said signal processing unit for analyzing the spatial information of the sample.
    • 光学成像装置和方法技术领域本发明涉及一种光学成像装置和方法,更具体地涉及一种具有短相干长度光源的光学成像装置和方法。 该装置包括具有多个输出的光源,用于提供参考光和样品光; 用于将样品光引导到样品并引导信息灯的样品探针模块; 干涉模块,用于将参考光引导到光电检测器,并将信息光引导到光电检测器; 以及电耦合到所述光检测器的信号处理单元; 其中参考光和信息光叠加在光检测器上,光检测器检测干涉光图案,并将表示干涉光图案的信号传送到所述信号处理单元,以分析样品的空间信息 。
    • 7. 发明申请
    • OPTICAL IMAGING APPARATUS AND METHOD
    • 光学成像装置和方法
    • US20110001982A1
    • 2011-01-06
    • US12497986
    • 2009-07-06
    • Yu-Ta WangPo-Kai HsuKuang-Yu HsuDong-Yo JhengChien-Chung TsaiSheng-Lung Huang
    • Yu-Ta WangPo-Kai HsuKuang-Yu HsuDong-Yo JhengChien-Chung TsaiSheng-Lung Huang
    • G01B9/02
    • G01B9/02022G01B9/02065G01B9/02091G01B2290/35G01B2290/45
    • The present invention relates to an optical imaging apparatus and a method, and more particularly to an optical imaging apparatus and a method with short coherence length optical source. The apparatus comprises an optical source with a plurality of outputs for providing a reference light and a sample light; a sample probe module for leading the sample light to a sample, and leading an information light out; an interference module for leading the reference light to a photo detector, and leading the information light to the photo detector; and a signal processing unit electrically coupled to the photo detector; wherein the reference light and the information light are superimposed on the photo detector, an interference light pattern is detected by the photo detector, and a signal that represents the interference light pattern is transmitted to said signal processing unit for analyzing the spatial information of the sample.
    • 光学成像装置和方法技术领域本发明涉及一种光学成像装置和方法,更具体地涉及一种具有短相干长度光源的光学成像装置和方法。 该装置包括具有多个输出的光源,用于提供参考光和样品光; 用于将样品光引导到样品并引导信息灯的样品探针模块; 干涉模块,用于将参考光引导到光电检测器,并将信息光引导到光电检测器; 以及电耦合到所述光检测器的信号处理单元; 其中参考光和信息光叠加在光检测器上,光检测器检测干涉光图案,并将表示干涉光图案的信号传送到所述信号处理单元,以分析样品的空间信息 。
    • 8. 发明授权
    • Three-dimensional optical coherence tomography confocal imaging apparatus
    • 三维光学相干断层扫描共焦成像装置
    • US08553209B2
    • 2013-10-08
    • US12912018
    • 2010-10-26
    • Chien-Chung TsaiKuang-Yu HsuYen-Sheng LinSheng-Lung Huang
    • Chien-Chung TsaiKuang-Yu HsuYen-Sheng LinSheng-Lung Huang
    • G01N21/00G01B11/02
    • G01B9/02042G01B9/02005G01B9/02091G01B2290/45
    • A 3D OCT confocal imaging apparatus includes a light source module for providing an illumination beam with wider bandwidth from a crystal fiber; a reference source module; a pickup module; a beam splitter; an optical filter; and a sensor module. When the illumination beam illuminates a sample, a pickup objective lens and a piezoelectric actuator of the pickup module together provide an image beam scanning the sample in depth direction. The image beam and a reference beam from the reference source module together form an interference image beam, which is converted by a photosensor into a coherence image electric signal. Meanwhile, the interference image beam passes through a pinhole to form a confocal image, which is converted by an excited light photometer into a confocal image electric signal. With an image processing system, a 3D OCT confocal microscopic image of the sample can be produced from these image electric signals.
    • 3D OCT共焦成像装置包括用于从晶体光纤提供具有更宽带宽的照明光束的光源模块; 参考源模块; 拾取模块; 分束器; 滤光片; 和传感器模块。 当照明光束照射样品时,拾取模块的拾取物镜和压电致动器一起提供在深度方向上扫描样品的图像束。 来自参考源模块的图像束和参考光束一起形成干涉图像束,其由光电传感器转换成相干图像电信号。 同时,干涉图像光束通过针孔形成共焦图像,该共焦图像由激发光光度计转换成共焦图像电信号。 利用图像处理系统,可以从这些图像电信号产生样本的3D OCT共聚焦显微镜图像。