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Reflective optical system made entirely of ultra low thermal expansion ceramics: A possibility of genuine athermal cryogenic IR instrument

机译:完全由超低热膨胀陶瓷制成的反光光学系统:真正的静脉低温IR仪器的可能性

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Reflective optical system free from chromatic aberration is essential for astronomical instruments, which usually require wider wavelength coverage. However, it cannot always be the optimum choice compared with refractive optical system in terms of cost-effectiveness because mirrors require high surface accuracy and also because non-co-axial systems force tough alignment work. This dilemma could be overcome by a monolithic reflective optical system made entirely of cordierite CO-720, a ceramic material by Kyocera, which is the first material that offers both high-precision 3D-shaping and surface polishing for optical quality. This material also possesses a very low coefficient of thermal expansion (CTE) enabling a genuine athermal system useful for various astronomical applications. This athermality could make a significant breakthrough especially for cryogenic infrared instruments since optical systems made of cordierite are expected to keep as-built performance throughout the cooling process, providing extremely high wavefront accuracy that has never been possible at cryogenic temperature with conventional optical systems made of glasses or metals. In this paper, we report the first cryogenic optical testing of a small cordierite-made imaging optical system that was simply assembled with mechanical accuracy at room temperature. We confirmed that the diffraction-limited optical performance is kept even down to~80K as built in the room temperature.
机译:自由色差的反射光学系统对于天文仪器至关重要,这通常需要更广泛的波长覆盖。然而,与成本效益的折射光学系统相比,它不能始终是最佳选择,因为镜子需要高表面精度,并且因为非共轴系统强制坚固的对准工作。通过堇青石CO-720完全由克上陶瓷制成的单片反射光学系统可以克服这种困境,该蛋白质是kyocera的陶瓷材料,这是提供用于光学质量的高精度3D成型和表面抛光的第一材料。该材料还具有非常低的热膨胀系数(CTE),使得适用于各种天文应用的正版动脉系统。这种动脉性可以产生重大突破,特别是对于低温红外仪器,由于由堇青石制成的光学系统预计在整个冷却过程中保持开展的性能,提供极高的波前精度,在低温温度下从未具有传统的光学系统眼镜或金属。在本文中,我们报告了小堇青石制造的成像光学系统的第一个低温光学测试,该系统在室温下用机械精度组装在机械精度。我们确认衍射限制的光学性能保持在室温下构建的差别至约80k。

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