Understanding how disks dissipate is essential to studies of planet formation. However, identifying exactly how dust and gas dissipate is complicated due to the difficulty of finding objects that are clearly in the transition phase of losing their surrounding material.We use Spitzer Infrared Spectrograph (IRS) spectra to examine 35 photometrically selected candidate cold disks (disks with large inner dust holes). The infrared spectra are supplemented with optical spectra to determine stellar and accretion properties and 1.3 mm photometry to measure disk masses. Based on detailed spectral energy distribution modeling, we identify 15 new cold disks. The remaining 20 objects have IRS spectra that are consistent with disks without holes, ...
We present Spitzer InfraRed Spectrograph (IRS) mid-infrared (5-35 μm) spectra of a complete flux-lim...
We have obtained millimeter-wavelength photometry, high-resolution optical spectroscopy, and adaptiv...
We have identified four circumstellar disks with a deficit of dust emission from their inner 15-50 A...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
International audienceUnderstanding how disks dissipate is essential to studies of planet formation....
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
We have identified four circumstellar disks with a deficit of dust emission from their inner 15-50 A...
International audienceWe have identified four circumstellar disks with a deficit of dust emission fr...
International audienceWe have identified four circumstellar disks with a deficit of dust emission fr...
We have obtained millimeter-wavelength photometry, high-resolution optical spectroscopy, and adaptiv...
We present Spitzer InfraRed Spectrograph (IRS) mid-infrared (5-35 μm) spectra of a complete flux-lim...
We have obtained millimeter-wavelength photometry, high-resolution optical spectroscopy, and adaptiv...
We have identified four circumstellar disks with a deficit of dust emission from their inner 15-50 A...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
International audienceUnderstanding how disks dissipate is essential to studies of planet formation....
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
We have identified four circumstellar disks with a deficit of dust emission from their inner 15-50 A...
International audienceWe have identified four circumstellar disks with a deficit of dust emission fr...
International audienceWe have identified four circumstellar disks with a deficit of dust emission fr...
We have obtained millimeter-wavelength photometry, high-resolution optical spectroscopy, and adaptiv...
We present Spitzer InfraRed Spectrograph (IRS) mid-infrared (5-35 μm) spectra of a complete flux-lim...
We have obtained millimeter-wavelength photometry, high-resolution optical spectroscopy, and adaptiv...
We have identified four circumstellar disks with a deficit of dust emission from their inner 15-50 A...