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首页> 外文期刊>Journal of optical technology >Possibilities for increasing the thermal stability o the receiving mirror of a telescope by controlling the conditions of the heat transfer on its back surface
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Possibilities for increasing the thermal stability o the receiving mirror of a telescope by controlling the conditions of the heat transfer on its back surface

机译:通过控制其后表面上的热传递条件来增加望远镜的接收镜的热稳定性的可能性

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摘要

The influence of the heat transfer conditions on the back surface of a large parabolic mirror on the thermally induced shift in focus when the working surface absorbs a portion of the incident radiation was investigated. In addition, a comparison of the thermal aberration of the mirror under the conditions of natural heat transfer on the back and working surfaces when the back surface is thermally insulated or thermally stabilized was carried out. As a result of this research, it was shown that, for mirrors made of materials with low thermal conductivity, such as Zerodur or Sitall, the thermal insulation of the back surface leads to an approximate 40-fold decrease in the thermally induced focus increment, which is due to the compensation of the flexural deformation of the mirror. For a mirror made of a material with high thermal conductivity (such as silicon carbide), the thermal insulation of the back surface has the opposite effect. At the same time, the gain from the thermal stabilization of this surface is small-a factor of only 1.36. The results and conclusions presented herein are relevant for mirrors used in both ground- and space-based telescopes, operating under conditions when absorbed radiant flux density values do not exceed 50 W/m(2). The proposed calculation method is convenient for determining ways to reduce the thermal aberration in mirrors. (C) 2019 Optical Society of America
机译:研究了当工作表面吸收一部分入射辐射时,在焦点的热抛光镜背面对大抛抛光镜背面的影响。另外,在进行后表面热绝缘或热稳定的后,在背面和工作表面上的自然传热条件下对镜子的热像差的比较。由于该研究,表明,对于由具有低导热率的材料制成,例如Zerodur或SitAll,背面的绝热性导致热诱导的焦点增量的近似40倍降低,这是由于镜子的弯曲变形的补偿。对于由具有高导热率的材料(例如碳化硅)制成的镜子,背面的绝热绝缘具有相反的效果。同时,从该表面的热稳定化的增益小于1.36的倍数。本文所呈现的结果和结论与用于基于地基和空间的望远镜中使用的镜子相关,在吸收的辐射助焊剂密度值不超过50w / m时在条件下操作。所提出的计算方法方便地确定减少镜子中的热像差的方法。 (c)2019年光学学会

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