Published June 1, 1994 | Version Published
Book Section - Chapter Open

Monolithic Si bolometer array for the Caltech Submillimeter Observatory

Abstract

We are developing a submillimeter continuum camera for the Caltech Submillimeter Observatory (CSO) located on Mauna Kea. The camera will employ a monolithic Si bolometer array which was developed by Mosley et al. at the NASA Goddard Space Flight Center (GSFC). The camera will be cooled to a temperature of about 300 mK in a ^3He cryostat, and will operate primarily at wavelengths of 350 and 450 micrometers. We plan to use a bolometer array with 1 x 24 directly illuminated pixels, each pixel of dimension 1 x 2 mm^2, which is about half of the F/4 beam size at these wavelengths. Each pixel is 10 - 12 micrometers thick and is supported only by four thin Si legs formed by wet chemical etch. The pixels are doped n-type by phosphorus implantation, compensated by boron implantation. Signals from the bolometer pixels are first amplified by cryogenically cooled FETs. The signals are further amplified by room-temperature amplifiers and then separately digitized by 16 bit A/D converters with differential inputs. The outputs of the A/D converters are fed into a digital signal processing board via fiber-optic cables. The electronics and data acquisition system were designed by the Goddard group. We will report the status of this effort.

Additional Information

© 1994 SPIE--The International Society for Optical Engineering. We are very grateful to the group of people at GSFC, in particular to K. Boyce, and A. Szymkowiak. Without their help, this project would not have been possible. We also wish thank B. Mott and his staff in the microelectronics fabrication laboratory at GSFC, NASA, for fabricating the bolometer arrays and help us to bond the load resistors. This work is carried out under the NSF contract no: AST-9313929.

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Identifiers

Eprint ID
71350
Resolver ID
CaltechAUTHORS:20161021-133430750

Funding

NSF
AST-9313929

Dates

Created
2016-10-21
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Updated
2021-11-11
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Caltech Custom Metadata

Series Name
Proceedings of SPIE
Series Volume or Issue Number
2198