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Structural analysis of shearing mirror assembly in a lateral double-shearing interferometer

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
By the finite element analysis method, the deformation and stress of the double-shearing mirror assembly is studied to validate the feasibility of the opto-mechanical structure. The side axial deformations (within A400 mm) of the upper semicircular mirror and the lower one are both up to micrometer order along the Y-direction under gravitational action. The equivalent stresses of two semicircular mirrors are more concentrated in the contact areas, but far less than the admissible stress of K9 material. The axial deformations of double-shearing mirror surfaces induced by the temperature rise are very serious, which are the major error sources for the measurement accuracy. The experimental results further validate the analysis conclusions available and show the opto-mechanical design to be reasonable.
Czasopismo
Rocznik
Strony
701--715
Opis fizyczny
Bibliogr. 18 poz.
Twórcy
autor
autor
autor
autor
autor
autor
  • College of Mechanical Engineering, Tongji University, No. 4800 Caoan Road, Shanghai, P.R. Chin
Bibliografia
  • [1] LIU L.R., WANG L.J., LUAN Z., SUN J.F., LI A.H., LIU D.A., Physical basis and corresponding instruments for PAT performance testing of inter-satellite laser communication terminals, Proceedings of SPIE 6304, 2006, pp. 63040C1–6304C11.
  • [2] SIROHI R.S., KOTHIYAL M.P., Double wedge plate shearing interferometer for collimation test, Applied Optics 26(19), 1987, pp. 4054–4056.
  • [3] BORN M., WOLF E., Principles of Optics, Cambridge University Press, Cambridge, 1999, pp. 302–308.
  • [4] XU R.W., LIU H.Z., LUAN Z., LIU L.R., A phase-shifting vectorial-shearing interferometer with wedge plate phase-shifter, Journal of Optics A: Pure Applied Optics 7(11), 2005, pp. 617–623.
  • [5] LUAN Z., LIU L.R., LIU D.A., TENG S.Y., Jamin double-shearing interferometer for diffraction--limited wave-front test, Applied Optics 43(9), 2004, pp. 1819–1824.
  • [6] LEE Y.W., CHO H.M., LEE I.W., Half-aperture shearing interferometer for collimation testing, Optical Engineering 32(11), 1993, pp. 2837–2840.
  • [7] LUAN Z., LIU L.R., WANG L.J., LIU D.A., Large-optics white light interferometer for laser wavefront test: Apparatus and application, Proceedings of SPIE 7091, 2008, p. 70910Q.
  • [8] WANG L.J., LIU L.R., LUAN Z., SUN J.F., ZHOU Y., LIU D.A., The mechanical design of the large--optics double-shearing interferometer for the test of the diffraction-limited wavefront, Proceedings of SPIE 7091, 2008, p. 70910S.
  • [9] HATHEWAY A.E., Mountings for a four meter glass mirror, Proceedings of SPIE 1303, 1990, pp. 142–147.
  • [10] LI A.H., BIAN Y.M., LIANG Y.C., ZHU Y.J., Integrated design for large-scale opto-mechanical structure, Optica Applicata 39(2), 2009, pp. 383–389.
  • [11] SCHWESINGER G., Optical effect of flexure in vertically mounted precision mirrors, Journal of Optical Society of America 44(5), 1954, pp. 417–424.
  • [12] MALVICK A.J., Dynamic relaxation: A general method for determination of elastic deformation of mirrors, Applied Optics 7(10), 1968, pp. 2117–2121.
  • [13] MALVICK A.J., Theoretical elastic deformations of the Steward Observatory 230-cm and the Science Center 154-cm mirrors, Applied Optics 11(3), 1972, pp. 575–585
  • [14] CHO M.K., POCZULP G.A., Surface distortion of a 3. 5-meter mirror subjected to thermal variations, Proceedings of SPIE 1532, 1991, pp.137–145.
  • [15] BIGELOW B.C., Finite element analysis of large lenses for the Keck telescope high resolution echelle spectrograph, Proceedings of SPIE 1532, 1991, pp. 15–26.
  • [16] WANG L.J., LIU L.R., SUN J.F., ZHOU Y., LUAN Z., LIU D.A., Method to measure frequency change of tunable laser based on Jamin shearing interferometer, Proceedings of SPIE 7432, 2009, p. 743218.
  • [17] FISCHER-CRIPPS A.C., Introduction to Contact Mechanics, 2nd Edition, Springer, 2007.
  • [18] PERSON E., STEPP L., Response of large mirrors to thermal distributions, Proceedings of SPIE 0748, 1987, pp. 215–228.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW7-0018-0049
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