Hostname: page-component-cd9895bd7-7cvxr Total loading time: 0 Render date: 2024-12-26T05:09:38.178Z Has data issue: false hasContentIssue false

Tridimensional Spectroscopic Techniques: Conference Summary

Published online by Cambridge University Press:  12 April 2016

J. Bland-Hawthorn*
Affiliation:
Anglo-Australian Observatory, P.O. Box 296, Epping, NSW 2121, Australia

Extract

Core share and HTML view are not available for this content. However, as you have access to this content, a full PDF is available via the ‘Save PDF’ action button.

Over the last four days, we have enjoyed a wide range of talks on developments in three dimensional spectroscopic techniques. The conference organizing committee are to be congratulated for the artful manner in which instrumental presentations were interleaved with talks on the scientific results from these instruments. The general thrust of most talks was to advance the versatility of traditional instruments either through the Jacquinot (throughput) advantage or through the multiplex advantage, or both. A number of groups have attempted to utilize the full aperture of scanning Fabry-Perot and Fourier Transform interferometers. Arguably, Fabry-Perot interferometers have a wider application at present, although imaging Fourier Transform devices appear to have finally arrived, at least in the near infrared.

Type
6. Conference Summary
Copyright
Copyright © Astronomical Society of the Pacific 1995

References

Abrams, M.C. et al 1994, ApJS, 93, 351 Google Scholar
Allen, D.A. et al 1993, PASA, 10, 298 CrossRefGoogle Scholar
Arsenault, R. et al 1994, preprintGoogle Scholar
Atherton, P.D. et al 1981, Opt. Eng. 20, 806 Google Scholar
Bell, R.J. 1972, Introductory Fourier Spectroscopy, Academic Press Google Scholar
Binney, J. & Tremaine, S.D. 1987, Galactic Dynamics, Princeton Google Scholar
Bland, J. & Tully, R.B. 1989, AJ, 98, 723 Google Scholar
Bland-Hawthorn, J. & Jones, A.W. 1994, preprintGoogle Scholar
Budde, W. 1979, Appl. Opt., 18, 1555 CrossRefGoogle Scholar
Cecil, G.N. 1988, ApJ, 329, 38 Google Scholar
Clark, D. et al 1984, QJRAS, 25, 114 Google Scholar
Connes, P. 1970, ARA&A, 8, 209 Google Scholar
Connes, P. & Michel, G. 1975, Appl. Opt., 14, 2067 CrossRefGoogle Scholar
Courtès, G. 1982, IAU Coll. 67, 123 Google Scholar
Courtès, G. et al 1988, In Instrumentation for Ground-based Optical Astronomy, IXth Santa Cruz workshop, p. 266.Google Scholar
Durret, F. et al 1994, A& Ap, in pressGoogle Scholar
Ennos, A.E. 1966, Appl. Opt., 5, 51 Google Scholar
Eppeldauer, G. & Hardis, J.E. 1991, Appl. Opt., 30, 3091 Google Scholar
Felenbok, P. et al 1994, Instrumentation in Astronomy VIII, SPIE vol. 2198, p. 115 Google Scholar
Fowler, A.M. & Gatley, I. 1990, ApJ, 353, L33 CrossRefGoogle Scholar
Geballe, T.R. 1982, Proc. of the 2nd ESO Infrared Workshop, Garching Google Scholar
Gunning, W. 1982, Appl. Opt. 21, 3129 Google Scholar
Heck, A. 1992, StarBriefs, Observatoire Astronomique, Strasbourg, France Google Scholar
le Coarer, E. et al 1993, A&A, in pressGoogle Scholar
Luppino, G.A. et al 1994, In Instrumentation in Astronomy VIII, SPIE vol. 2198, p. 810 Google Scholar
Hall, D.N.B. et al 1979, In Instrumentation in Astronomy III, SPIE vol. 172, 121 Google Scholar
Hecht, E. 1990, Optics, Addison-Wesley, Massachusetts, 2nd ed., p. 383.Google Scholar
Iye, M. 1994, In Instrumentation in Astronomy VIII, SPIE vol. 2198, p. 153 Google Scholar
Janesick, J. & Elliot, T. 1991, In History & Advancement of Large Area Array Scientific CCD Imagers, PASP Conf. Series, Tucson Google Scholar
Kormendy, J. 1988, ApJ, 325, 128 Google Scholar
Larson, H.P. & Fink, U. 1975, Appl. Opt., 14, 2085 Google Scholar
Mack, J.E. et al 1963, Appl. Opt., 2, 873 Google Scholar
MacLeod, H.A. 1969, Thin Film Optical Filters, Adam Hilger, London Google Scholar
Maihara, T. et al 1993, PASP, 105, 940 Google Scholar
Maillard, J.P. 1973, PhD, Universite du Paris-Sud, Centre d’OrsayGoogle Scholar
Maillard, J.P. & Simons, D.A. 1992, In ESO Workshop on Solar Physics & Astrophysics at Interferometrie Resolution, Paris, p. 205 Google Scholar
Malacara, D. 1988, Meth. Expt. Phys., 26, chap. 1Google Scholar
McNutt, D.P. 1965, JOSA, 55, 288 Google Scholar
Meaburn, J. 1976, Detection and Spectrophotometry of Faint Light, Reidel Google Scholar
Ontani, H. et al 1994, In Instrumentation in Astronomy VIII, SPIE vol. 2198, p. 229 Google Scholar
Oliva, E. & Origlia, L. 1992, A&A, 254, 466 Google Scholar
Ramsay, S.K., Mountain, M. & Geballe, T.R. 1992, MNRAS, 259, 751 Google Scholar
Reynolds, R.J. et al 1990, In Instrumentation in Astronomy VII, SPIE, vol. 1235 Google Scholar
Rocca-Volmerange, B. et al 1994, A&Ap, in pressGoogle Scholar
Simons, D.A. et al 1994, In Instrumentation in Astronomy VIII, SPIE, vol. 2198, p. 185 Google Scholar
Tokunaga, A. 1976, PhD, State Univ. of New York, Stony BrookGoogle Scholar
Traub, W.A. & Stier, M.T. 1976, Appl. Opt., 15, 364 Google Scholar
Tyson, J.A. 1986, Appl. Opt., 3, 2131 Google Scholar
Vanderreist, Ch., Courtès, & Donas, J. 1984, J. Opt., 15, 237 CrossRefGoogle Scholar
Vanderreist, Ch. & Lemonnier, J.-P. 1988, In Instrumentation for Ground-based Optical Astronomy,, IXth Santa Cruz workshop, p. 304.Google Scholar
van der Stadt, H. & Muller, J.M. 1985, JOSA, 2, 1363 Google Scholar
Wilkinson, A. et al 1986, MNRAS, 218, 297 Google Scholar
Wyse, R.F.G. & Gilmore, G. 1992, MNRAS, 257, 1 Google Scholar