We have obtained millimeter-wavelength photometry, high-resolution optical spectroscopy, and adaptive optics near-infrared imaging for a sample of 26 Spitzer-selected transition circumstellar disks. All of our targets are located in the Ophiuchus molecular cloud (d similar to 125 pc) and have spectral energy distributions (SEDs) suggesting the presence of inner opacity holes. We use these ground-based data to estimate the disk mass, multiplicity, and accretion rate for each object in our sample in order to investigate the mechanisms potentially responsible for their inner holes. We find that transition disks are a heterogeneous group of objects, with disk masses ranging from <0.6 to 40 M(JUP) and accretion rates ranging from <10(-11) to 10(...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
Context: Knowledge of the evolution of circumstellar accretion disks is pivotal to our understanding...
Context. Understanding disk dissipation is essential for studying how planets form. Disk gaps and ho...
We have obtained millimeter-wavelength photometry, high-resolution optical spectroscopy, and adaptiv...
We have obtained millimeter-wavelength photometry, high-resolution optical spectroscopy, and adaptiv...
We have obtained millimeter-wavelength photometry, high-resolution optical spectroscopy, and adaptiv...
Transition disk objects are pre-main-sequence stars with little or no near-IR excess and significant...
As part of an ongoing program aiming to characterize a large number of Spitzer-selected transition d...
As part of an ongoing program aiming to characterize a large number of Spitzer-selected transition d...
As part of an ongoing program aiming to characterize a large number of Spitzer-selected transition d...
As part of an ongoing program aiming to characterize a large number of Spitzer-selected transition d...
We report the results of a study of the intermediate- and high-mass stars in the young, rich star-fo...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
We present high-resolution M-band (~5 μm) spectra of 14 transitional disks—circumstellar disks with ...
We present high-resolution M-band (~5 μm) spectra of 14 transitional disks—circumstellar disks with ...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
Context: Knowledge of the evolution of circumstellar accretion disks is pivotal to our understanding...
Context. Understanding disk dissipation is essential for studying how planets form. Disk gaps and ho...
We have obtained millimeter-wavelength photometry, high-resolution optical spectroscopy, and adaptiv...
We have obtained millimeter-wavelength photometry, high-resolution optical spectroscopy, and adaptiv...
We have obtained millimeter-wavelength photometry, high-resolution optical spectroscopy, and adaptiv...
Transition disk objects are pre-main-sequence stars with little or no near-IR excess and significant...
As part of an ongoing program aiming to characterize a large number of Spitzer-selected transition d...
As part of an ongoing program aiming to characterize a large number of Spitzer-selected transition d...
As part of an ongoing program aiming to characterize a large number of Spitzer-selected transition d...
As part of an ongoing program aiming to characterize a large number of Spitzer-selected transition d...
We report the results of a study of the intermediate- and high-mass stars in the young, rich star-fo...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
We present high-resolution M-band (~5 μm) spectra of 14 transitional disks—circumstellar disks with ...
We present high-resolution M-band (~5 μm) spectra of 14 transitional disks—circumstellar disks with ...
Understanding how disks dissipate is essential to studies of planet formation. However, identifying ...
Context: Knowledge of the evolution of circumstellar accretion disks is pivotal to our understanding...
Context. Understanding disk dissipation is essential for studying how planets form. Disk gaps and ho...