We describe the expected scienti fic capabilities of CHARIS, a high-contrast integral- field spectrograph (IFS) currently under construction for the Subaru telescope. CHARIS is part of a new generation of instruments, enabled by extreme adaptive optics (AO) systems (including SCExAO at Subaru), that promise greatly improved contrasts at small angular separation thanks to their ability to use spectral information to distinguish planets from quasistatic speckles in the stellar point-spread function (PSF). CHARIS is similar in concept to GPI and SPHERE, on Gemini South and the Very Large Telescope, respectively, but will be unique in its ability to simultaneously cover the entire near-infrared J, H, and K bands with a low-resolution mode. This...
CHARIS is a near-infrared (JHK) coronagraphic integral field spectrograph (IFS) housed on the Subaru...
International audienceThe Subaru Coronagraphic Extreme Adaptive Optics (SCExAO) instrument is an ext...
Direct Imaging of exoplanets is one of the most technically difficult techniques used to study exopl...
The Coronagraphic High Angular Resolution Imaging Spectrograph (CHARIS) is an integral field spectro...
Ground-based telescopes equipped with adaptive-optics (AO) systems and specialized science cameras a...
High-contrast imaging techniques now make possible both imaging and spectroscopy of planets around n...
Recent developments in high-contrast imaging techniques now make possible both imaging and spectrosc...
The Coronagraphic High Angular Resolution Imaging Spectrograph (CHARIS) is an integral field spectro...
We describe the current performance of the Subaru Coronagraphic Extreme Adaptive Optics (SCExAO) ins...
We describe a new high-contrast imaging capability well suited for studying planet-forming disks: ne...
One of the leading direct Imaging techniques, particularly in ground-based imaging, uses a coronagra...
We describe the current on-sky performance of the Subaru Coronagraphic Extreme Adaptive Optics (SCEx...
We present an analysis of instrument performance using new observations taken with the Coronagraphic...
The Subaru Coronagraphic Extreme Adaptive Optics (SCExAO) instrument, currently under development fo...
The atmospheres of gas giant planets are thought to be inhomogeneous due to weather and patchy cloud...
CHARIS is a near-infrared (JHK) coronagraphic integral field spectrograph (IFS) housed on the Subaru...
International audienceThe Subaru Coronagraphic Extreme Adaptive Optics (SCExAO) instrument is an ext...
Direct Imaging of exoplanets is one of the most technically difficult techniques used to study exopl...
The Coronagraphic High Angular Resolution Imaging Spectrograph (CHARIS) is an integral field spectro...
Ground-based telescopes equipped with adaptive-optics (AO) systems and specialized science cameras a...
High-contrast imaging techniques now make possible both imaging and spectroscopy of planets around n...
Recent developments in high-contrast imaging techniques now make possible both imaging and spectrosc...
The Coronagraphic High Angular Resolution Imaging Spectrograph (CHARIS) is an integral field spectro...
We describe the current performance of the Subaru Coronagraphic Extreme Adaptive Optics (SCExAO) ins...
We describe a new high-contrast imaging capability well suited for studying planet-forming disks: ne...
One of the leading direct Imaging techniques, particularly in ground-based imaging, uses a coronagra...
We describe the current on-sky performance of the Subaru Coronagraphic Extreme Adaptive Optics (SCEx...
We present an analysis of instrument performance using new observations taken with the Coronagraphic...
The Subaru Coronagraphic Extreme Adaptive Optics (SCExAO) instrument, currently under development fo...
The atmospheres of gas giant planets are thought to be inhomogeneous due to weather and patchy cloud...
CHARIS is a near-infrared (JHK) coronagraphic integral field spectrograph (IFS) housed on the Subaru...
International audienceThe Subaru Coronagraphic Extreme Adaptive Optics (SCExAO) instrument is an ext...
Direct Imaging of exoplanets is one of the most technically difficult techniques used to study exopl...