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THz optical design considerations and optimization for medical imaging applications

机译:太赫兹光学设计注意事项和医学成像应用的优化

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THz imaging system design will play an important role making possible imaging of targets with arbitrary properties and geometries. This study discusses design consideration and imaging performance optimization techniques in THz quasioptical imaging system optics. Analysis of field and polarization distortion by off-axis parabolic (OAP) mirrors in THz imaging optics shows how distortions are carried in a series of mirrors while guiding the THz beam. While distortions of the beam profile by individual mirrors are not significant, these effects are compounded by a series of mirrors in antisymmetric orientation. It is shown that symmetric orientation of the OAP mirror effectively cancels this distortion to recover the original beam profile. Additionally, symmetric orientation can correct for some geometrical off-focusing due to misalignment. We also demonstrate an alternative method to test for overall system optics alignment by investigating the imaging performance of the tilted target plane. Asymmetric signal profile as a function of the target plane's tilt angle indicates when one or more imaging components are misaligned, giving a preferred tilt direction. Such analysis can offer additional insight into often elusive source device misalignment at an integrated system. Imaging plane tilting characteristics are representative of a 3-D modulation transfer function of the imaging system. A symmetric tilted plane is preferred to optimize imaging performance.
机译:太赫兹成像系统设计将发挥重要作用,使具有任意属性和几何形状的目标成像成为可能。这项研究讨论了THz准光学成像系统光学器件中的设计考虑和成像性能优化技术。通过太赫兹成像光学器件中的离轴抛物线(OAP)镜对场和偏振畸变的分析显示出,在引导THz光束时如何在一系列反射镜中进行畸变。尽管单个反射镜对光束轮廓的扭曲不明显,但一系列反对称定向的反射镜会加剧这些影响。结果表明,OAP镜的对称取向有效地消除了这种畸变,从而恢复了原始光束轮廓。此外,由于未对准,对称方向可以校正某些几何偏离焦点。我们还演示了通过调查倾斜目标平面的成像性能来测试整体系统光学对准的替代方法。作为目标平面倾斜角的函数的不对称信号轮廓指示何时一个或多个成像组件未对准,从而给出了优选的倾斜方向。这样的分析可以提供对集成系统中经常难以捉摸的源设备未对准的更多见解。成像平面倾斜特性代表成像系统的3-D调制传递函数。优选对称的倾斜平面以优化成像性能。

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