Probing the Dust and Gas in the Transitional Disk of CS Cha with Spitzer
Here we present the Spitzer IRS spectrum of CS Cha, a member of the similar to 2 Myr old Chamaeleon star-forming region, which reveals an optically thick circumstellar disk truncated at similar to 43 AU, the largest hole modeled in a transitional disk to date. Within this inner hole, similar to 5 x...
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Veröffentlicht in: | The Astrophysical journal 2007-08, Vol.664 (2), p.L111-L114 |
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Sprache: | eng |
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Zusammenfassung: | Here we present the Spitzer IRS spectrum of CS Cha, a member of the similar to 2 Myr old Chamaeleon star-forming region, which reveals an optically thick circumstellar disk truncated at similar to 43 AU, the largest hole modeled in a transitional disk to date. Within this inner hole, similar to 5 x [unk] lunar masses of dust are located in a small optically thin inner region that extends from 0.1 to 1 AU. In addition, the disk of CS Cha has bigger grain sizes and more settling than the previously modeled transitional disks DM Tau, GM Aur, and CoKu Tau/4, suggesting that CS Cha is in a more advanced state of dust evolution. The Spitzer IRS spectrum also shows [Ne II] 12.81 mu m fine-structure emission with a luminosity of 1.3 x 10 super(29) ergs s super(-1), indicating that optically thin gas is present in this similar to 43 AU hole, in agreement with Ha measurements and a UV excess that indicate that CS Cha is still accreting 1.2 x [unk] M [unk] yr super(-1). We do not find a correlation of the [Ne II] flux with L sub(x); however, there is a possible correlation with M, which if confirmed would suggest that EUV fluxes due to accretion are the main agent for formation of the [Ne II] line. |
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ISSN: | 1538-4357 0004-637X 1538-4357 |
DOI: | 10.1086/520879 |