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Millimeter-sized grains in the protostellar envelopes: Where do they come from?

Authors :
Yi Hang Valerie WONG
Hiroyuki HIRASHITA
Zhi-Yun LI
Source :
Publications of the Astronomical Society of Japan. Aug2016, Vol. 68 Issue 4, p67-1-67-9. 9p.
Publication Year :
2016

Abstract

Grain growth during star formation affects the physical and chemical processes in the evolution of star-forming clouds. We investigate the origin of the millimeter (mm)-sized grains recently observed in Class I protostellar envelopes. We use the coagulation model developed in our previous paper and find that a hydrogen number density of as high as 1010 cm-3, instead of the typical density 105 cm-3, is necessary for the formation of mm-sized grains. Thus, we test a hypothesis that such large grains are transported to the envelope from the inner, denser parts, finding that gas drag by outflow efficiently "launches" the large grains as long as the central object has not grown to ≿0.1M⊙. By investigating the shattering effect on the mm-sized grains, we ensure that the large grains are not significantly fragmented after being injected in the envelope. We conclude that the mm-sized grains observed in the protostellar envelopes are not formed in the envelopes but formed in the inner parts of the star-forming regions and transported to the envelopes before a significant mass growth of the central object, and that they survive in the envelopes. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00046264
Volume :
68
Issue :
4
Database :
Academic Search Index
Journal :
Publications of the Astronomical Society of Japan
Publication Type :
Academic Journal
Accession number :
117272182
Full Text :
https://doi.org/10.1093/pasj/psw066