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The Vega debris disk: A surprise from spitzer
K. Y.L. Su
, G. H. Rieke
, K. A. Misselt
, J. A. Stansberry
, A. Moro-Martin
, K. R. Stapelfeldt
, M. W. Werner
, D. E. Trilling
, G. J. Bendo
, K. D. Gordon
, D. C. Hines
, M. C. Wyatt
, W. S. Holland
, M. Marengo
, S. T. Megeath
, G. G. Fazio
Astronomy and Planetary Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
161
Scopus citations
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Keyphrases
Vega
100%
Debris Disks
100%
Total Mass
66%
Photometer
66%
Multiband Imaging
66%
Power Law
66%
Radial Power
66%
Debris
33%
Small Grains
33%
Particle number Density
33%
Surface Particle
33%
Collision Event
33%
Amalgam
33%
Grain Composition
33%
Density Profile
33%
Radiation Pressure
33%
Number Density
33%
Dust
33%
Disk Image
33%
Maximum Grain Size
33%
Lower Limit
33%
Steady State
33%
M-set
33%
Inner Boundary
33%
Large Distances
33%
Minimum Grain Size
33%
Far-infrared Images
33%
Thermal Emission
33%
Size Limit
33%
High Spatial Resolution
33%
Axially Symmetric
33%
Amorphous Silicate
33%
Mid-infrared
33%
Dust Production
33%
Kuiper Belt
33%
Thin Disk
33%
Short Lifetime
33%
Radiometric Properties
33%
Production Rate
33%
Surface Brightness
33%
Angular Size
33%
Earth and Planetary Sciences
Power Law
100%
Photometer
100%
Grain Size
50%
Radiation Pressure
50%
High Spatial Resolution
50%
Silicate
50%
Kuiper Belt
50%
Emissions
50%
Thermal Emission
50%
Physics
Photometer
100%
Debris Disks
100%
Kuiper Belt
50%
Radiation Pressure
50%
Grain Size
50%
Steady State
50%
Carbonaceous Grains
50%
Silicate Grains
50%
Thermal Emission
50%
Engineering
Photometer
100%
Number Density
100%
Spatial Resolution
50%
Belts
50%
Assuming
50%
Lower Limit
50%
Particle Number
50%
Angular Size
50%