We present the latest results of our on-going closed-loop “end-to-end” numerical adaptive optics (AO) simulations concerning both a standard-AO and a three-star ground-layer AO system for a near-infrared 2-m class telescope at Dome C, Antarctica. We demonstrate that Dome C is an ideal site for wide-field AO-aided astronomy, define in details the AO system(s) optimized for the median turbulence profile considered, and finally show that a 0.3 Strehl ratio and 200-mas-wide stable point- spread function is reached in band J on at least a 15^prime-diameter field. <P /
The unique atmospheric conditions present at sites such as Dome C on the Antarctic plateau are very ...
Abstract. The turbulence structure of the atmosphere is the primary limitation to adaptive optics sy...
International audienceDuring the austral winter 2005, the first astronomical site testing campaign w...
We present the latest results of our on-going closed-loop “end-to-end” numerical adaptive optics (AO...
International audienceWe present the latest results of our on-going closed-loop “end-to-end” numeric...
International audienceWe present the latest results of our on-going closed-loop “end-to-end” numeric...
Modeling of astronomically important atmospheric parameters, and the impact these parameters have on...
Modeling of astronomically important atmospheric parameters, and the impact these parameters have on...
The unique atmospheric characteristics found at Dome C on the Antarctic plateau offer significant ad...
The unique atmospheric characteristics found at Dome C on the Antarctic plateau offer significant ad...
The unique atmospheric characteristics found at Dome C on the Antarctic plateau offer significant ad...
The unique atmospheric conditions present at sites such as Dome C on the Antarctic plateau are very ...
The turbulence structure of the atmosphere is the primary limitation to adaptive optics system perfo...
The turbulence structure of the atmosphere is the primary limitation to adaptive optics system perfo...
The unique atmospheric conditions present at sites such as Dome C on the Antarctic plateau are very ...
The unique atmospheric conditions present at sites such as Dome C on the Antarctic plateau are very ...
Abstract. The turbulence structure of the atmosphere is the primary limitation to adaptive optics sy...
International audienceDuring the austral winter 2005, the first astronomical site testing campaign w...
We present the latest results of our on-going closed-loop “end-to-end” numerical adaptive optics (AO...
International audienceWe present the latest results of our on-going closed-loop “end-to-end” numeric...
International audienceWe present the latest results of our on-going closed-loop “end-to-end” numeric...
Modeling of astronomically important atmospheric parameters, and the impact these parameters have on...
Modeling of astronomically important atmospheric parameters, and the impact these parameters have on...
The unique atmospheric characteristics found at Dome C on the Antarctic plateau offer significant ad...
The unique atmospheric characteristics found at Dome C on the Antarctic plateau offer significant ad...
The unique atmospheric characteristics found at Dome C on the Antarctic plateau offer significant ad...
The unique atmospheric conditions present at sites such as Dome C on the Antarctic plateau are very ...
The turbulence structure of the atmosphere is the primary limitation to adaptive optics system perfo...
The turbulence structure of the atmosphere is the primary limitation to adaptive optics system perfo...
The unique atmospheric conditions present at sites such as Dome C on the Antarctic plateau are very ...
The unique atmospheric conditions present at sites such as Dome C on the Antarctic plateau are very ...
Abstract. The turbulence structure of the atmosphere is the primary limitation to adaptive optics sy...
International audienceDuring the austral winter 2005, the first astronomical site testing campaign w...