• Journal of the European Optical Society-Rapid Publications
  • Vol. 18, Issue 1, 2022002 (2022)
Daewook Kim1、2、3、*, Xiaolong Ke4, Weslin Pullen1, Tianyi Wang5, Heejoo Choi1、3, Vipender Singh Negi6, Lei Huang5, and Mourad Idir5
Author Affiliations
  • 1James C. Wyant College of Optical Sciences, The University of Arizona, 1630 E. University Blvd., Tucson, AZ 85721, USA
  • 2Department of Astronomy and Steward Observatory, Univ. of Arizona, 933 N. Cherry Ave., Tucson, AZ 85721, USA
  • 3Large Binocular Telescope Observatory, Univ. of Arizona, Tucson, AZ 85721, USA
  • 4School of Mechanical and Automotive Engineering, Xiamen University of Technology, Xiamen 361024, China
  • 5National Synchrotron Light Source II (NSLS-II), Brookhaven National Laboratory, PO Box 5000, Upton, NY 11973, USA
  • 6Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India
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    DOI: 10.1051/jeos/2022002 Cite this Article
    Daewook Kim, Xiaolong Ke, Weslin Pullen, Tianyi Wang, Heejoo Choi, Vipender Singh Negi, Lei Huang, Mourad Idir. Generalized large optics fabrication multiplexing[J]. Journal of the European Optical Society-Rapid Publications, 2022, 18(1): 2022002 Copy Citation Text show less
    References

    [1] R.A. Jones. Computer control for grinding and polishing. Photon. Spectra, 34-39(1963).

    [2] R.E. Wagner, R.R. Shannon. Fabrication of aspherics using a mathematical model for material removal. Appl. Opt., 13, 1683-1689(1974).

    [3] H.M. Pollicove, E.M. Fess, J.M. Schoen. Deterministic manufacturing processes for precision optical surfaces. Tustison R.W. (eds), Window and dome technologies VIII, 5078, 90-96(2003).

    [4] D.D. Walker, D. Brooks, A. King, R. Freeman, R. Morton, G. McCavana, S.W. Kim. The “Precessions” tooling for polishing and figuring flat, spherical and aspheric surfaces. Opt. Express, 11, 958-964(2003).

    [5] J.H. Burge, S. Benjamin, D. Caywood, C. Noble, M. Novak, C. Oh, R. Parks, B. Smith, P. Su, M. Valente, C. Zhao. Fabrication and testing of 1.4-m convex off-axis aspheric optical surfaces. Burge J.H., Fähnle O.W., Williamson R. (eds), Optical manufacturing and testing VIII, 7426, 74260L1-74260L12(2009).

    [6] I. Trumper, P. Hallibert, J.W. Arenberg, H. Kunieda, O. Guyon, H.P. Stahl, D.W. Kim. Optics technology for large-aperture space telescopes: From fabrication to final acceptance tests. Adv. Opt. Photon., 10, 644-702(2018).

    [7] L.R. Graves, G.A. Smith, D. Apai, D.W. Kim. Precision optics manufacturing and control for next-generation large telescopes. Nanomanuf. Metrol., 2, 65-90(2019).

    [8] D.W. Kim, S.W. Kim, J.H. Burge. Non-sequential optimization technique for a computer controlled optical surfacing process using multiple tool influence functions. Opt. Express, 17, 21850-21866(2009).

    [9] V.S. Negi, H. Garg, S.K. Rr, V. Karar, U.K. Tiwari, D.W. Kim. Parametric removal rate survey study and numerical modeling for deterministic optics manufacturing. Opt. Express, 28, 26733-26749(2020).

    [10] T. Wang, L. Huang, H. Kang, H. Choi, D.W. Kim, K. Tayabaly, M. Idir. RIFTA: A Robust Iterative Fourier Transform-based dwell time Algorithm for ultra-precision ion beam figuring of synchrotron mirrors. Sci. Rep., 10, 8135(2020).

    [11] T. Wang, L. Huang, Y. Zhu, M. Vescovi, D. Khune, H. Kang, H. Choi, D.W. Kim, K. Tayabaly, N. Bouet, M. Idir. Development of a position–velocity–time-modulated two-dimensional ion beam figuring system for synchrotron X-ray mirror fabrication. Appl. Opt., 59, 3306-3314(2020).

    [12] X. Ke, T. Wang, H. Choi, W. Pullen, L. Huang, M. Idir, D.W. Kim. Dual-tool multiplexing model of parallel computer controlled optical surfacing. Opt. Lett., 45, 6426-6429(2020).

    Daewook Kim, Xiaolong Ke, Weslin Pullen, Tianyi Wang, Heejoo Choi, Vipender Singh Negi, Lei Huang, Mourad Idir. Generalized large optics fabrication multiplexing[J]. Journal of the European Optical Society-Rapid Publications, 2022, 18(1): 2022002
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