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New figuring model based on surface slope profile for grazing‐incidence reflective optics
Authors:Lin Zhou  Lei Huang  Nathalie Bouet  Konstantine Kaznatcheev  Matthew Vescovi  Yifan Dai  Shengyi Li  Mourad Idir
Institution:1. College of Mechatronic Engineering and Automation, National University of Defense Technology, 109 Deya Road, Changsha, Hunan410073, People's Republic of China;2. NSLS II, Brookhaven National Laboratory, PO Box 5000, Upton, 3. NY11973, USA;4. Hu'nan Key Laboratory of Ultra-Precision Machining Technology, 47 Yanzheng Street, Changsha, Hunan410073, People's Republic of China
Abstract:Surface slope profile is widely used in the metrology of grazing‐incidence reflective optics instead of surface height profile. Nevertheless, the theoretical and experimental model currently used in deterministic optical figuring processes is based on surface height, not on surface slope. This means that the raw slope profile data from metrology need to be converted to height profile to perform the current height‐based figuring processes. The inevitable measurement noise in the raw slope data will introduce significant cumulative error in the resultant height profiles. As a consequence, this conversion will degrade the determinism of the figuring processes, and will have an impact on the ultimate surface figuring results. To overcome this problem, an innovative figuring model is proposed, which directly uses the raw slope profile data instead of the usual height data as input for the deterministic process. In this paper, first the influence of the measurement noise on the resultant height profile is analyzed, and then a new model is presented; finally a demonstration experiment is carried out using a one‐dimensional ion beam figuring process to demonstrate the validity of our approach.
Keywords:ion beam figuring  synchrotron optics  one‐dimensional  surface slope
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