Change of a State of the Optical Parts Surfaces made of K8 Glass after Polishing Completion

Article Preview

Abstract:

The work is devoted to studying the polished surface state of K8 optical glass by ellipsometry, IR spectroscopy and surface roughness measurement methods. It is shown that for chemically stable K8 glass the change of the surface state is insignificant, that is caused by its composition.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

315-319

Citation:

Online since:

February 2019

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2019 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] D.Yu. Kruchinin, E.P. Farafontova, Ambient Environment Effect on a Polished Optical-Glass Surface, Glass and Ceramics. 72 (2016) 320-322.

DOI: 10.1007/s10717-016-9782-2

Google Scholar

[2] D.Yu. Kruchinin, E.P. Farafontova, Protection of Polished Optical-Glass Surfaces from the Ambient Environment, Glass and Ceramics. 73 (2016) 187-189.

DOI: 10.1007/s10717-016-9853-4

Google Scholar

[3] D.Yu. Kruchinin, O.L. Paramonova, Polished BK10 Optical-Glass Surface Protection from the Ambient Environment, Glass and Ceramics. 74 (2017) 37-39.

DOI: 10.1007/s10717-017-9923-2

Google Scholar

[4] S.V. Rykhlickii, V.A. Shvec, E.V. Spesivcev and N.N. Mikhailov. Ellipsometry of the Physics and Chemical Processes on Interphase Boundary, Condensed Matter and Interphases. 4 (2006) 327-333.

Google Scholar

[5] R. Azzam and N. Bashara, Ellipsometry and Polarized Light [Russian Translation], Mir, Moscow, (1981).

Google Scholar

[6] V.A. Shvets, E.V. Spesivtsev, S.V. Rykhlitskiǐ, Analysis of a Static Scheme of Ellipsometric Measurements, Optics and Spectroscopy. 97 (2004) 483-494.

DOI: 10.1134/1.1803656

Google Scholar

[7] R.K. Mavlyanov, A.Ya. Vinogradov and V.A. Tolmachev, Study of the Optical Properties of Lead Zirconate-Titanate Layers Obtained by Magnetron Sputtering, Journal of Optical Technology. 82 (2015) 64-67.

DOI: 10.1364/jot.82.000064

Google Scholar

[8] V.T. Prokopenko, I.A. Khramzovsky, V.A. Zemlyansky, Yu.V. Lisitsyn and K.G. Sekarin, Ellipsometry of Optical Connections Optoelectronics Elements, Journal of Instrument Engineering. 51 (2008) 57-65.

Google Scholar

[9] M.A. Girsova, G.F. Golovina, L.N. Kurilenko and T.V. Antropova, Synthesis and Study of Bismuth-Containing High-Silica Glass by the IR Spectroscopy Method, Glass Physics and Chemistry. 41 (2015) 93-97.

DOI: 10.1134/s1087659615010101

Google Scholar

[10] A.I. Kuznetsov, D.Yu. Kruchinin, L.M. Fedotova, Yu.D. Kruchinin, Effect of Iron Oxides in Sodium Borosilicates Glasses on their Water Resistance, The Soviet Journal of Glass Physics and Chemistry. 14 (1989) 337-341.

Google Scholar

[11] A.I. Efimova, A.V. Zoteev, A.V. Pavlikov, A.A. Sklyankin and E.D. Bayeva, Infrared Spectroscopy [in Russian], Moscow, Izd. MGU, (2016).

Google Scholar

[12] R.A. Spragg, IR Spectrometers, Encyclopedia of Spectroscopy and Spectrometry, 2nd Ed. Academic Press, 2010, pp.1199-1209.

DOI: 10.1016/b978-0-12-374413-5.00088-9

Google Scholar

[13] O.A. Pshenko, M.A. Girsova, G.F. Golovina and T.V. Antropova, Study of the Iron-Containing Sodium Borosilicate Two-Phase Glasses and Porous Glasses by Optical Spectroscopy, Glass Physics and Chemistry. 42 (2016) 33-37.

DOI: 10.1134/s1087659616010156

Google Scholar

[14] J. Böcker, Spektroskopie, Vogel Buchverlag, Würzburg, (1997).

Google Scholar

[15] Yu.A. Vainer, M.V. Zorina. A.E. Pestov, N.N. Salashchenko, N.I. Chkalo, V. Ermakov, S.I. Konorski, S.V. Kuzin, S.V. Shestov, I.L. Stroulya, Manufacturing and Metrology of Super-Smooth Optical Surfaces, The Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques, 8 (2015) 5-8.

DOI: 10.1134/s1027451015040357

Google Scholar

[16] GOST 13659-78: Colorless Optical Glass: Physical and Chemical Characteristics and Basic Parametres [in Russian], Izd. Standartov, Moscow (1978).

Google Scholar

[17] GOST 11141-84: Optical parts. Classed of cleanness of surfaces. Method of controls. [in Russian], Izd. Standartov, Moscow (1984).

Google Scholar

[18] D.Yu. Kruchinin, RF Patent 2,370,799. (2009).

Google Scholar

[19] D.Yu. Kruchinin, O.B. Yakovlev, RF Patent 2,454,379. (2012).

Google Scholar

[20] D.Yu. Kruchinin, O.B. Yakovlev, M.P. Andronov, Gluing Optical Components with 0-class Cleanliness of Polished Surfaces, Opt. Zh. 78 (2011) 73-75.

DOI: 10.1364/jot.78.000279

Google Scholar

[21] Industry Standard OST 3-4888-80: Colorless Optical Glass: Synthetic Composition [in Russian], Moscow (1980).

Google Scholar

[22] N.M. Bobkova, Physical chemistry of refractory nonmetallic and silicate materials [in Russian], Vysheyshaya shkola, Minsk, (2007).

Google Scholar

[23] K. Nakamoto: Infrared and Raman Spectra of Inorganic and Coordination Compounds, 4. Auflage, John Wiley & Sons, New York, Chichester, Brisbane, Toronto, Singapore, (1986).

DOI: 10.1002/bbpc.198800131

Google Scholar

[24] White W. B., Keester K. L. Optical Absorption Spectra of Iron in the Rock-Forming Silicates, The American Mineralogist, 51 (1966) 774-791.

Google Scholar