CHALLENGES IN FORMING THE SOLAR SYSTEM'S GIANT PLANET CORES VIA PEBBLE ACCRETION
Author:
Publisher
American Astronomical Society
Subject
Space and Planetary Science,Astronomy and Astrophysics
Link
http://stacks.iop.org/1538-3881/148/i=6/a=109/pdf
Reference75 articles.
1. PROTOPLANETARY DISK STRUCTURES IN OPHIUCHUS. II. EXTENSION TO FAINTER SOURCES
2. Stability, Instability, and “Backward” Transport in Stratified Fluids
3. On the Corotation Torque in a Radiatively Inefficient Disk
4. Catastrophic Disruptions Revisited
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