DocumentCode
3513270
Title
Microwave Radiometers from 0.6 to 22 GHz for Juno, A Polar Orbiter around Jupiter
Author
Pingree, P. ; Janssen, M. ; Oswald, J. ; Brown, S. ; Chen, J. ; Hurst, K. ; Kitiyakara, A. ; Maiwald, F. ; Smith, S.
Author_Institution
Jet Propulsion Lab., California Inst. of Technol., Pasadena, CA
fYear
2008
fDate
1-8 March 2008
Firstpage
1
Lastpage
15
Abstract
A compact instrument called the MWR (microwave radiometer) is under development at JPL for Juno, the next NASA new frontiers mission, scheduled to launch in 2011. It´s purpose is to measure the thermal emission from Jupiter´s atmosphere at six selected frequencies from 0.6 to 22 GHz, operating in direct detection mode, in order to quantify the distributions and abundances of water and ammonia in Jupiter´s atmosphere. The goal is to understand the previously unobserved dynamics of the sub-cloud atmosphere, and to discriminate among models for planetary formation in our solar system. as part of a deep space mission aboard a solar-powered spacecraft, MWR is designed to be compact, lightweight, and low power. The receivers and control electronics are protected by a radiation-shielding enclosure on the Juno spacecraft that also provides for a benign and stable operating temperature environment. All antennas and RF transmission lines outside the vault must withstand low temperatures and the harsh radiation environment surrounding Jupiter. This paper describes the concept of the MWR instrument and presents results of one breadboard receiver channel.
Keywords
Jupiter; radiometry; space research; space vehicles; temperature measurement; Juno polar orbiter; Jupiter; NASA new frontiers mission; RF transmission lines; breadboard receiver channel; deep space mission; direct detection mode; frequency 0.6 GHz to 22 GHz; microwave radiometers; planetary formation; radiation-shielding enclosure; solar system; solar-powered spacecraft; sub-cloud atmosphere; thermal emission measurement; unobserved dynamics; Atmosphere; Atmospheric measurements; Atmospheric modeling; Extraterrestrial measurements; Frequency measurement; Instruments; Jupiter; NASA; Radiometers; Space vehicles;
fLanguage
English
Publisher
ieee
Conference_Titel
Aerospace Conference, 2008 IEEE
Conference_Location
Big Sky, MT
ISSN
1095-323X
Print_ISBN
978-1-4244-1487-1
Electronic_ISBN
1095-323X
Type
conf
DOI
10.1109/AERO.2008.4526403
Filename
4526403
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