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Recent Techniques in Solar Optical Astronomy from Space

Published online by Cambridge University Press:  30 March 2016

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The article summarizes some of the recent advances in the techniques of solar space research, particularly over the last 4 years, in an attempt to review the current state of instrument technology. The present state of development in rocket and satellite vehicles for solar observations, far ultraviolet detectors, optical materials, ultraviolet reflection coatings, filters, and photographic film fogging, are among the topics described.

Type
Joint Discussions
Copyright
Copyright © Reidel 1968

References

Adams, J., Manley, B.W. (1965) Electronic Engineering, 37, 180.Google Scholar
Bates, B., Bradley, D.J. (1966) Appl. Opt., 5, 971.CrossRefGoogle Scholar
Bates, B., Bradley, D.J. (1967) J. Opt. Soc. Amer., 57, 481.CrossRefGoogle Scholar
Becker, R.A. (1967) Appl. Opt., 6, 955.Google Scholar
Bennett, H.E. (1963) J. Opt. Soc. Amer., 53, 1389.Google Scholar
Bennett, H.E., Porteus, J.P. (1961) J. Opt. Soc. Amer., 51, 123.CrossRefGoogle Scholar
Berning, P.H., Hass, G., Madden, R.P. (1960) J. Opt. Soc. Amer., 50, 586.Google Scholar
Burton, W.M., Wilson, R. (1965) Nature, 207, 61.CrossRefGoogle Scholar
Burton, W.M., Ridgeley, A., Wilson, R. (1967) Mon. Not. R. astr. Soc, 135, 207.Google Scholar
Cairns, R.B., Samson, J.A.R. (1966) J. Opt. Soc. Amer., 56, 1568.Google Scholar
Canfield, L.R., Hass, G., Hunter, W.R. (1964) J. Phys., 25, 124.Google Scholar
Dietz, R.W., Bennett, J.M. (1966) Appl. Opt., 5, 881.Google Scholar
Dietz, R.W., Bennett, J.M. (1967) Appl. Opt., 6, 1275.Google Scholar
Fredga, K. (1966) Astrophys. J., 144, 854.Google Scholar
Goodrich, G.W., Wiley, W.C. (1962) Rev. Sci. Instrum., 33, 761.CrossRefGoogle Scholar
Hass, G., Ritter, E. (1967) J. Vacuum Sci. and Techn., 4, 71.Google Scholar
Hass, G., Jacobus, G.F., Hunter, W.R. (1967) J. Opt. Soc. Amer., 57, 758.Google Scholar
Heath, D.F., Sacher, P.A. (1966) Appl. Opt., 5, 937.CrossRefGoogle Scholar
Hinteregger, H.E. (1961) in Space Astrophysics. Ed. by Liller, W., McGraw-Hill, New York, p. 34.Google Scholar
Johnson, M.C. (1966) Bendix Corporation Technical Report No. 3640. Google Scholar
Johnston, R.G., Canfield, L.R., Madden, R.P. (1967) Appl. Opt., 6, 719.Google Scholar
Kreidl, N.J., Hensier, J.R. (1957) J. Opt. Soc. Amer., 47, 73.CrossRefGoogle Scholar
Monk, G.S. (1952) Nucleonics, 10, 52.Google Scholar
Newkirk, G.D. Jr., Bohlin, D. (1964) Appl. Opt., 3, 543.Google Scholar
O’Brien, B.J., Abney, F., Burch, J., Harrison, R., LaQuey, L., Wineicki, T. (1967) Rev. Sci. Instrum., 38, 1058.Google Scholar
Paul, F.W., McAndrew, CE., Diggins, J.C. (1967) J. Opt. Soc. Amer., 57, 582.Google Scholar
Rome, M. (1964a) IEEE Trans, on Nuclear Science, June 1964.Google Scholar
Rome, M. (1964b) Appl. Opt., 5, 855.Google Scholar
Shelton, R.D., deLoach, A.C. (1967) National Aeronautics and Space Administration Report TMX-53666. Marshall Space Flight Center.Google Scholar
Stroud, J.S. (1962) J. Chem. Phys., 37, 836.Google Scholar
Timothy, A.F., Timothy, J.G., Willmore, A.P. (1967) Appl. Opt., 6, 1319.CrossRefGoogle Scholar
Wilson, R. (1968) in the present volume, p. 94.Google Scholar