Hostname: page-component-848d4c4894-xfwgj Total loading time: 0 Render date: 2024-06-17T07:35:09.188Z Has data issue: false hasContentIssue false

CCD Mosaic Development for Large Optical Telescopes

Published online by Cambridge University Press:  07 August 2017

G. A. Luppino
Affiliation:
Institute for Astronomy, University of Hawaii
M. R. Metzger
Affiliation:
Institute for Astronomy, University of Hawaii
S. Miyazaki
Affiliation:
Institute for Astronomy, University of Hawaii and Subaru Telescope Project, National Astr. Obs. of Japan

Abstract

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.

We outline the recent developments in CCD imager technology aimed at producing the very large format (8192 × 8192 pixels and larger) detector mosaics required for existing 4-m class and new 8 to 10-m class telescopes. The key technology areas include buttable array design and buttable element packaging, and optimization schemes for QE and readout time. As an example, we highlight the University of Hawaii effort to develop an 8192 × 8192 15 μm pixel CCD mosaic.

Type
Section I — Review Papers
Copyright
Copyright © Kluwer 1995 

References

Boroson, T., Reed, R., Wong, W.-Y. and Lesser, M. 1994 Proc. SPIE 2198, 877.Google Scholar
Burke, B., Mountain, R., Harrison, D., Bautz, M., Doty, J., Ricker, G. and Daniels, P. 1991 IEEE Trans. Elec. Dev. 38, 1069.Google Scholar
Cook, K. H. 1995 in IAU Symposium No. 167, New Developments in Array Technology and Applications, Philip, A. G. D., Janes, K. A. and Upgren, A. R., eds., Kluwer Academic Press, Dordrecht, p. 285.Google Scholar
Cuillandre, J. C., Murrowinski, R., Crampton, D., Mellier, Y., Luppino, G. and Arsenault, R. 1995 in IAU Symposium No. 167, New Developments in Array Technology and Applications, Philip, A. G. D., Janes, K. A. and Upgren, A. R., eds., Kluwer Academic Press, Dordrecht, p. 213.Google Scholar
Geary, J. C., Luppino, G. A., Bredthauer, R., Hlivak, R. J. and Robinson, L. 1991 SPIE 1447, 264.Google Scholar
Griest, K 1991 ApJ 366, 412.CrossRefGoogle Scholar
Jacoby, G. et al. 1992 PASP 104, 599.Google Scholar
Kaiser, N. and Squires, G. 1993 ApJ 404, 441.Google Scholar
Lesser, M. 1994 SPIE 2198, 782.Google Scholar
Luppino, G. A., Bredthauer, R. and Geary, J. 1994 SPIE 2198, 810.Google Scholar
Luppino, G. A. and Miller, K. 1992 PASP 104, 215.Google Scholar
Luppino, G. A., Jim, K. T. C., Hlivak, R. J. and Yamada, H. 1992 SPIE 1656, 414.Google Scholar
Luppino, G. A., Gioia, I., Annis, J., Hammer, F. and Lefevre, 1993 ApJ 416, 444.Google Scholar
Sekiguchi, M., Iwashita, H., Doi, M., Kashikawa, N. and Okamura, S. 1992 PASP 104, 744.Google Scholar
Stover, R. J., Brown, W. E., Gilmore, D. K. and Wei, M. 1994 SPIE 2198, 803.Google Scholar
Stover, R. J., Brown, W. E., Gilmore, D. K. and Wei, M. 1995 in IAU Symposium No. 167, New Developments in Array Technology and Applications, Philip, A. G. D., Janes, K. A. and Upgren, A. R., eds., Kluwer Academic Press, Dordrecht, p. 19.Google Scholar
Stubbs, C., Marshall, S., Cook, K., Hills, R., Noonan, J., Akerlof, C., Alcock, C., Axelrod, T., Bennet, D., Dagley, K., Freeman, K., Griest, K., Park, H.-S., Perlmutter, S., Peterson, B., Quinn, P., Rodgers, A., Sosin, C. and Sutherland, W. (The MACHO Collaboration) 1993, SPIE 1900, 192.Google Scholar
Szentgyorgyi, A. 1993 Harvard CfA/SAO Technical Memorandum.Google Scholar
Tonry, J. and Schneider, D. 1988 AJ 96, 807.Google Scholar
Tyson, J. A., Bernstein, G., Blouke, M. and Lee, R. 1992 SPIE 1656, 400.Google Scholar
Tyson, J. A., Valdes, F. and Wenk, R. A. 1990 ApJ 349, L1.Google Scholar