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New optical mountings of the spectral devices with concave diffraction gratings and high entrance slit

机译:具有凹面衍射光栅和高入射狭缝的光谱设备的新型光学装置

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Abstract: The concave diffraction grating is both the dispersive and the focusing element at the same time. It can be the only optical unit of monochromator or polychromator. Using the concave diffraction gratings with nonequidistant and curved grooves gives the possibility for correction of the aberrations in the useful region of spectrum and provides the devices with determined focal surfaces. To increase the height of the entrance slit of the spectroscopic device we have to eliminate the first and the second-order astigmatism aberrations. Consideration of this type of aberration is very important now in view of the new types of spectral devices using fiber optics and multielement detectors being developed. These new elements allow us to register the spectrum of extended objects or a number of spectrums simultaneously. For the case of the double monochromator we noticed, that the second-order astigmatism can be completely eliminated if the second part of the double monochromator is equivalent to its first part, but the ray tracing is inverse. The experiment on the mathematical model of the double monochromator confirms this idea. For the case of polychromator or CCD spectrometer we can compensate that aberrations using the illumination system, consists of the spherical mirror. The angle of incidence of the light to the mirror is calculated such a way, that the astigmatism of the grating is compensated by the astigmatism of the mirror. !3
机译:摘要:凹面衍射光栅既是色散元件又是聚焦元件。它可以是单色仪或多色仪的唯一光学单元。使用具有不等距和弯曲凹槽的凹面衍射光栅可以校正有用光谱范围内的像差,并为设备提供确定的焦面。为了增加光谱设备的入口狭缝的高度,我们必须消除一阶和二阶像散像差。考虑到正在开发的使用光纤和多元素检测器的新型光谱设备,考虑这种类型的像差非常重要。这些新元素使我们能够同时注册扩展对象的光谱或多个光谱。对于双单色仪,我们注意到,如果双单色仪的第二部分等效于其第一部分,则可以完全消除二阶像散,但是光线追迹是相反的。在双单色仪的数学模型上进行的实验证实了这一想法。对于多色仪或CCD光谱仪,我们可以使用照明系统补偿由球面镜组成的像差。以这样的方式计算光到反射镜的入射角,使得光栅的像散由反射镜的像散补偿。 !3

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