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Development of mirrors made of chemically tempered glass foils for future X-ray telescopes

机译:为未来的X射线望远镜开发由化学钢化玻璃箔制成的镜子

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Thin slumped glass foils are considered good candidates for the realization of future X-ray telescopes with large effective area and high spatial resolution. However, the hot slumping process affects the glass strength, and this can be an issue during the launch of the satellite because of the high kinematical and static loads occurring during that phase. In the present work we have investigated the possible use of GorillaA (R) glass (produced by CorningA (R)), a chemical tempered glass that, thanks to its strength characteristics, would be ideal. The un-tempered glass foils were curved by means of an innovative hot slumping technique and subsequently chemically tempered. In this paper we show that the chemical tempering process applied to GorillaA (R) glass foils does not affect the surface micro-roughness of the mirrors. On the other end, the stress introduced by the tempering process causes a reduction in the amplitude of the longitudinal profile errors with a lateral size close to the mirror length. The effect of the overall shape changes in the final resolution performance of the glass mirrors was studied by simulating the glass foils integration with our innovative approach based on glass reinforcing ribs. The preliminary tests performed so far suggest that this approach has the potential to be applied to the X-ray telescopes of the next generation.
机译:薄的塌陷的玻璃箔被认为是实现具有大有效面积和高空间分辨率的未来X射线望远镜的理想选择。但是,热塌陷过程会影响玻璃强度,这可能是卫星发射过程中的一个问题,因为在此阶段会产生很高的运动和静态载荷。在当前的工作中,我们研究了可能使用的GorillaA(R)玻璃(由CorningA(R)生产),由于其强度特性,它是理想的化学钢化玻璃。通过创新的热塌陷技术将未回火的玻璃箔弯曲,然后进行化学回火。在本文中,我们表明,应用于GorillaA(R)玻璃箔的化学回火工艺不会影响反射镜的表面微观粗糙度。另一方面,由回火过程引入的应力导致纵向轮廓误差的幅度减小,其横向尺寸接近镜面长度。通过使用我们基于玻璃加强筋的创新方法模拟玻璃箔的集成,研究了整体形状变化对玻璃镜最终分辨率性能的影响。到目前为止进行的初步测试表明,这种方法有可能应用于下一代X射线望远镜。

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