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Zoom lens design for tilted objects

机译:变焦镜头设计倾斜物体

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When a zoom lens views a tilted finite conjugate object, its image plane is both tilted and distorted depending on magnification. Our camera image plane moves with six degrees of freedom; only one moving doublet lens is required to change magnification. Two lens design models were analyzed. The first required the optical and mechanical axes to be collinear, resulting in a tilted stop. The second allowed the optical axis to be tilted from the lens mechanical axis with an untilted stop moving along the mechanical axis. Both designs produced useful zoom lenses with excellent resolution for a distorted image. For both lens designs, the stop is anchored to the moving doublet and its diameter is unchanged throughout magnification changes. This unusual outcome allows the light level at each camera pixel to remain constant, independent of magnification. As-built tolerance analysis is used to compare both optical models. The design application is for proton radiography. At the end of an accelerator, protons exit an aluminum vacuum window producing a shadowgraph image onto an LYSO (lutetium yttrium orthosilicate) scintillator. The 5" square scintillator emission reflects off a pellicle and is collected by the zoom lenses located 24" away. Four zoom lenses will view the same pellicle at different alpha and beta angles. Blue emission from the scintillator is viewed at an alpha angle of -14° or -23° and beta angles of ±9° or ±25°. The pellicle directs the light backwards to a zone where adequate shielding of the cameras can be achieved against radiation scattered from the aluminum window.
机译:当变焦镜头视图倾斜有限缀合物对象时,其图像平面既倾斜并取决于放大倍率。我们的相机图像平面与六个自由移动;只需要一个移动的双重镜头来改变倍率。分析了两个镜头设计模型。首先需要光学和机械轴是共线的,导致倾斜的止动件。第二允许光轴从透镜机械轴线倾斜,直到沿机械轴线移动。两种设计都制作了有用的变焦镜头,具有扭曲图像的优异分辨率。对于两个镜头设计,止动件锚固到移动的双峰,其直径在整个放大倍率变化中不变。这种不寻常的结果允许每个相机像素处的光电平保持恒定,与放大率无关。竣工公差分析用于比较两个光学模型。设计应用用于质子造影。在加速器的末端,质子从铝真空窗口出口,在Lyso(钇钇锂硅酸盐)闪烁体上产生影子图像。 5“方形闪烁体发射反射薄膜,并由位于24英寸的变焦镜头收集。四个变焦镜头将在不同的α和β角处查看相同的薄片。闪烁体的蓝色发射以-14°或-23°的α角,β9°或±25°的β角度观察。薄膜将光向后引导到从铝窗散射的辐射可以实现摄像机的足够屏蔽的区域。

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