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Quantitative characterization of the x-ray imaging capability of rotating modulation collimators with laser light ud

机译:带有激光的旋转调制准直仪的X射线成像能力的定量表征

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摘要

We developed a method for making quantitative characterizations of bi-grid rotating modulation collimators (RMC ’s) that are used in a Fourier transform x-ray imager. With appropriate choices of the collimator spacings, this technique can be implemented with a beam-expanded He -Ne laser to simulate the plane wave produced by a point source at infinity even though the RMC ’s are diffraction limited at the He -Ne wavelength of 632.8 nm. The expanded beam passes through the grid pairs at a small angle with respect to their axis of rotation, and the modulated transmission through the grids as the RMC ’s rotate is detected with a photomultiplier tube. In addition to providing a quantitative characterization of the RMC ’s, the method also produces a measured point response function and provides an end-to-end check of the imaging system. We applied our method to the RMC ’s on the high-energy imaging device (HEIDI) balloon payload in its preflight configuration. We computed the harmonic ratios of the modulation time profile from the laser measurements and compared them with theoretical calculations, including the diffraction effects on irregular grids. Our results indicate the 25-in. (64-cm) x-ray imaging optics on HEIDI are capable of achieving images near the theoretical limit and are not seriously compromised by imperfections in the grids.
机译:我们开发了一种用于对傅里叶变换X射线成像仪中使用的双栅格旋转调制准直器(RMC)进行定量表征的方法。通过适当选择准直仪间距,可以使用扩束He-Ne激光器实施该技术,以模拟无穷远点光源产生的平面波,即使RMC的衍射限制在He-Ne波长下。 632.8 nm。扩展后的光束相对于其旋转轴以较小的角度穿过栅格对,并通过光电倍增管检测RMC旋转时穿过栅格的调制透射率。除了提供RMC的定量特征外,该方法还可以产生测量的点响应功能,并提供成像系统的端到端检查。我们将其方法应用于飞行前配置中的高能成像设备(HEIDI)气球有效载荷上的RMC。我们从激光测量结果计算出调制时间曲线的谐波比率,并将其与理论计算(包括对不规则网格的衍射效应)进行比较。我们的结果表明25英寸。 HEIDI上的(64厘米)x射线成像光学器件能够获得接近理论极限的图像,并且不会受到网格缺陷的严重损害。

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