Evaporating Protoplanetary Disk

Spitzer_ssc2007-08c_1024

spitzer_ssc2007-08c April 18th, 2007

Credit: NASA/JPL-Caltech/T. Pyle (SSC)

"The further on the edge, the hotter the intensity," sings Kenny Loggins in "Danger Zone," a song made famous by the movie "Top Gun." The same words ring true for young, cooler stars like our sun that live in the danger zones around scorching hot stars, called O-stars. The closer a young, maverick star happens to be to a super hot O-star, the more likely its burgeoning planets will be blasted into space.

This artist's concept illustrates the process in action. An O-star can be seen near the top right, just behind a young, cooler star and its swirling disk of planet-forming material. Disks like this one, called protoplanetary disks, are where planets are born. Gas and dust in a disk clumps together into tiny balls that sweep through the material, growing in size to eventually become full-grown planets.

The young star happens to lie within the "danger zone" around the O-star, which means that it is too close to the hot star to keep its disk. Radiation and winds from the O-star are boiling and blowing away the material, respectively. This process, called photoevaporation, takes anywhere from one hundred thousand to about one million years. Without a disk, the young star will not be able to produce planets.

Our own Sun and its suite of planets might have grown up on the edge of an O-star's danger zone before migrating to its current, spacious home. However, we know that our young sun didn't linger for too long in any hazardous territory, or our planets, and life, wouldn't be here today.

NASA's Spitzer Space Telescope surveyed the danger zones around five O-stars in the Rosette nebula. It was able to determine that the zones are spheres with a radius of approximately 1.6 light-years, or 10 trillion miles.

Provider: Spitzer Space Telescope

Image Source: http://www.spitzer.caltech.edu/images/1791-ssc2007-08c-Evaporating-Protoplanetary-Disk

Curator: Spitzer Space Telescope, Pasadena, CA, USA

Image Use Policy: Public Domain

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Image Details Image Details

Image Type
Artwork
Subject - General
Star > Spectral Type > O
Nebula > Type > Star Formation
Nebula > Appearance > Emission > H II Region
Star > Circumstellar Material > Disk > Protoplanetary
Spitzer_ssc2007-08c_1280
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ID
ssc2007-08c
Subject Category
E.3.3.1   E.4.1.2   E.4.2.1.1   E.3.7.2.1  
Subject Name
Credits
NASA/JPL-Caltech/T. Pyle (SSC)
Release Date
2007-04-18
Lightyears
Redshift
Reference Url
http://www.spitzer.caltech.edu/images/1791-ssc2007-08c-Evaporating-Protoplanetary-Disk
Type
Artwork
Image Quality
Good
Distance Notes
Facility
Instrument
Color Assignment
Band
Bandpass
Central Wavelength
Start Time
Integration Time
Dataset ID
Notes
Coordinate Frame
Equinox
Reference Value
Reference Dimension
Reference Pixel
Scale
Rotation
Coordinate System Projection:
Quality
FITS Header
Notes
Creator (Curator)
Spitzer Space Telescope
URL
http://www.spitzer.caltech.edu
Name
Spitzer Space Telescope
Email
Telephone
Address
1200 E. California Blvd.
City
Pasadena
State/Province
CA
Postal Code
91125
Country
USA
Rights
Public Domain
Publisher
Spitzer Science Center
Publisher ID
spitzer
Resource ID
ssc2007-08c.tif
Metadata Date
2011-09-06
Metadata Version
1.1
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