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    • 95. 发明授权
    • Adaptive optic lens and method of making
    • 自适应光学透镜及其制作方法
    • US06935743B2
    • 2005-08-30
    • US10795166
    • 2004-03-06
    • John H. Shadduck
    • John H. Shadduck
    • A61F2/16G02B1/06G02B3/12G02B3/14G02B26/06G02C7/04
    • G02B3/14A61F2/145A61F2/1613A61F2/1635A61F2210/0014G02B26/06
    • An lens for correcting human vision, for example an IOL, contact lens or corneal inlay or onlay, that carries and interior phase or layer comprising a pattern of individual transparent adaptive displacement structures. In the exemplary embodiments, the displacement structures are actuated by shape change polymer that adjusts a shape or other parameter in response to applied energy that in turn displaces a fluid media within the lens that actuates a flexible lens surface. The adaptive optic means of the invention can be used to create highly localized surface corrections in the lens to correct higher order aberrations-which types of surfaces cannot be fabricated into and IOL and then implanted. The system of displacement structures also can provide spherical corrections in the lens.
    • 用于校正人类视觉的镜片,例如IOL,隐形眼镜或角膜镶嵌物或镶嵌物,其携带和内部相或包含单独的透明自适应位移结构的图案的层。 在示例性实施例中,位移结构由形状变化聚合物致动,聚合物响应于所施加的能量而调节形状或其它参数,所述能量又使透镜内的流体介质移动,该流体介质致动柔性透镜表面。 本发明的自适应光学装置可以用于在透镜中产生高度局部化的表面校正,以校正高阶像差 - 哪些类型的表面不能被制造和IOL然后植入。 位移结构的系统也可以在透镜中提供球面校正。
    • 98. 发明申请
    • Scintillation tolerant optical field sensing system and associated method
    • 闪烁耐受光场感测系统及相关方法
    • US20050151960A1
    • 2005-07-14
    • US10755793
    • 2004-01-12
    • David GerweHarold SchallJames Stone
    • David GerweHarold SchallJames Stone
    • G01J1/00G01J9/00G02B26/06
    • G02B26/06G01J9/00
    • An optical field sensing system and an associated method are provided that are tolerant of scintillation. The system includes a wavefront sensor that measures gradients across a wavefront at a first resolution defined by the subapertures of the wavefront sensor. The system also includes an intensity sensor that measures the intensity across the wavefront at a higher resolution. The system further includes a wavefront processor that determines respective phases across the wavefront. In addition to the gradients and the intensity measurements, the wavefront processor may determine the respective phases based also upon the noise affiliated with the measurements. In this regard, the wavefront processor may determine the respective phases across the wavefront at least partially based upon the gradients as adjusted by weights that are based upon the intensity measured by the intensity sensor and are influenced by evidence of scintillation.
    • 提供了一种容忍闪烁的光场感测系统和相关方法。 该系统包括波前传感器,该波前传感器以由波前传感器的子孔径定义的第一分辨率来测量波前的渐变。 该系统还包括强度传感器,以更高的分辨率测量波前的强度。 该系统还包括波前处理器,其确定波前的各个相位。 除了梯度和强度测量之外,波前处理器还可以基于伴随测量的噪声来确定相应的相位。 在这方面,波前处理器可以至少部分地基于通过基于由强度传感器测量的强度并受闪烁证据的影响的权重调整的梯度来确定波前的各个相位。
    • 99. 发明申请
    • Methods and devices for forming a high-power coherent light beam
    • 用于形成大功率相干光束的方法和装置
    • US20050147141A1
    • 2005-07-07
    • US10748555
    • 2003-12-29
    • Daniel SoxJeffrey Hunt
    • Daniel SoxJeffrey Hunt
    • G02B26/06H01S5/068H01S5/40H01S3/13H01S5/00
    • G02B27/0087G02F2203/18H01S5/06821H01S5/4025
    • A diode laser for providing a high-energy coherent light beam suitably includes an array of laser diodes, each producing a laser beamlet. The beamlets are provided to a spatial light modulator (SLM) with an array of pixels, each pixel corresponding to a portion of the light beam. The phase variation across the light beam wavefront is monitored at a detector, and a feedback signal indicative of the phase variation is provided to control electronics. The control electronics process the feedback signal to modulate a local index of refraction within one or more pixels of the SLM to reduce the variation in phase across the beam wavefront. Because phase variations across the beam wavefront are reduced, relatively large diode arrays can be formulated, thereby resulting in relatively high powered diode lasers.
    • 用于提供高能量相干光束的二极管激光器适当地包括激光二极管阵列,每个激光二极管产生激光子束。 子束被提供给具有像素阵列的空间光调制器(SLM),每个像素对应于光束的一部分。 在检测器处监测光束波前的相位变化,并且向控制电子器件提供指示相位变化的反馈信号。 控制电子装置处理反馈信号以调制SLM的一个或多个像素内的局部折射率,以减少波束波前的相位变化。 因为波束波前的相位变化减小,所以可以制定相对较大的二极管阵列,由此导致相对高的二极管激光器。