Semi-Kinematic Coupling Design and Analysis for Giant Steerable Science Mirror Prototype of Thirty Meter Telescope
Hongchao Zhao, Wenduo Chen, Qichang An, Peng Guo, Fei Yang

TL;DR
This paper introduces a new coupling design for a large telescope mirror to ensure high precision under heavy loads.
Contribution
A novel semi-kinematic coupling design using V-grooves and canoe-like components is proposed and validated.
Findings
The mathematical model accurately predicted the repeatability of the coupling design.
Experimental results confirmed the model's predictions and met the required precision standards.
Abstract
The Giant Steerable Science Mirror prototype is being developed to assess the tertiary mirror system of the Thirty Meter Telescope. In this study, a new semi-kinematic coupling design is proposed for the prototype based on three pairs of V-grooves and canoe-like components to allow for high repeatability accuracy under heavy loads. A mathematical model was constructed to estimate the repeatability accuracy using the corresponding measurement results and machining errors. The proposed design was verified by an experiment, and the results were consistent with the mathematical model. Furthermore, the results indicate that the repeatability of the semi-kinematic coupling is sufficient for the requirement.
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Taxonomy
TopicsAdaptive optics and wavefront sensing · Optical Systems and Laser Technology · Advanced Measurement and Metrology Techniques
