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Spitzer's Solar System studies of asteroids, planets and the zodiacal cloud

Authors :
Alan W. Harris
Douglas P. Hamilton
Yanga R. Fernandez
William T. Reach
Anne J. Verbiscer
Dale P. Cruikshank
David E. Trilling
Yvonne Pendleton
Leigh N. Fletcher
Michael F. Skrutskie
Michael Mueller
Heidi B. Hammel
Carey M. Lisse
Joshua P. Emery
Glenn S. Orton
Naomi Rowe-Gurney
Source :
Nature Astronomy, Nature Astronomy, 4(10), 940-946
Publication Year :
2020

Abstract

In its 16 years of scientific measurements, the Spitzer Space Telescope performed a number of groundbreaking and key infrared measurements of Solar System objects near and far. In this second of two Review Articles, we describe results from Spitzer observations of asteroids, dust rings and planets that provide new insight into the formation and evolution of our Solar System. The key Spitzer results presented here can be grouped into three broad classes: characterizing the physical properties of asteroids, notably including a large survey of near-Earth objects; detection and characterization of several dust/debris disks in the Solar System; and comprehensive characterization of ice giant (Uranus and Neptune) atmospheres. Many of these observations provide critical foundations for future infrared space-based observations. In the Spitzer Space Telescope’s 16 years of operation, it observed many Solar System objects and environments. In this second Review Article of a pair, Spitzer’s insight into asteroids, dust clouds and rings and the ice giant planets are summarized.

Details

Language :
English
Database :
OpenAIRE
Journal :
Nature Astronomy, Nature Astronomy, 4(10), 940-946
Accession number :
edsair.doi.dedup.....5f334c69a653a49a0564ac79040162ca