SWIFT image slicer: Large format, compact, low scatter image slicing

Proceedings of SPIE the International Society for Optical Engineering 6273 II (2006)

Authors:

M Tecza, N Thatte, F Clarke, T Goodsall, D Freeman, Y Salaun

Abstract:

We present the SWIFT image slicer and its novel de-magnifying design. It is based on the MPE-3D and SPIFFI image slicers, uses plane mirrors to slice the input field, but achieves a considerable de-magnification through the use of a mosaic of spherical lenses. As only plane and spherical surfaces are used in the design, classical polishing techniques can be applied to achieve very high surface accuracy and quality. This reduces aberrations and scattered light, mandatory for an image slicer working at optical wavelengths and behind an adaptive optics system. Except for the lens mosaic, the SWIFT slicer is built entirely from Zerodur and is assembled using optical contacting. We present a detailed description of the design as well as results of the early stages of its fabrication.

FMOS: The fiber multiple-object spectrograph IV: Current status of OHS-based spectrograph

Proceedings of SPIE the International Society for Optical Engineering 6269 I (2006)

Authors:

F Iwamuro, T Maihara, K Ohta, S Eto, M Sakai, M Akiyama, M Kimura, N Tamura, J Noumaru, H Karoji, GB Dolton, IJ Lewis, IAJ Tosh, GJ Murray, NA Dipper, DJ Robertoson, PR Gillingham, S Smedley, GA Smith, G Frost

Abstract:

The Fiber Multiple-Object Spectrograph for Subaru Telescope (FMOS) is quite large instrument composed of the prime focus unit, the fiber bundle unit, and the two infrared spectrographs. Among these units, a part of the prime focus unit and one of the spectrograph were transported from Kyoto University to the Subaru observatory in the middle of 2005. We present the optical and the mechanical components of the spectrograph, which was reassembled on the new floor of the Subaru dome. We also show the preliminary results of the optical alignment and the cooling test of the instrument at the summit of Mauna Kea.

The UK FMOS spectrograph

Proceedings of SPIE the International Society for Optical Engineering 6269 II (2006)

Authors:

GB Dalton, IJ Lewis, DG Bonfield, AR Holmes, CB Brooks, H Lee, IAJ Tosh, TR Froud, M Patel, NA Dipper, C Blackburn

Abstract:

We describe the build phase of the UK FMOS spectrograph, a 200 fibre cooled OH Suppression infrared spectrograph being constructed as part of Subaru's Fibre Multi Object Spectroscopy facility. Here we describe recent UK activities within the FMOS programme and the likely schedule for commissioning at Subaru.

The VISTA infrared camera

Proceedings of SPIE the International Society for Optical Engineering 6269 I (2006)

Authors:

GB Dalton, M Caldwell, AK Ward, MS Whalley, G Woodhouse, RL Edeson, P Clark, SM Beard, AM Gallie, SP Todd, JMD Strachan, NN Bezawada, WJ Sutherland, JP Emerson

Abstract:

We describe the integration and test phase of the construction of the VISTA Infrared Camera, a 64 Megapixel, 1.65 degree field of view 0.9-2.4 micron camera which will soon be operating at the cassegrain focus of the 4m VISTA telescope. The camera incorporates sixteen IR detectors and six CCD detectors which are used to provide autoguiding and wavefront sensing information to the VISTA telescope control system.

Scientific requirements for a European ELT

Proceedings of SPIE - The International Society for Optical Engineering 6267 II (2006)

Authors:

I Hook, G Dalton, R Gilmozzi

Abstract:

The science case for the next generation of Extremely Large Telescopes (ELTs) covers a huge range of astronomical topics and requires a wide range of capabilities. Here we describe top-level requirements on an ELT, which were derived from some of the key science cases identified by European astronomers. After a brief summary of these science cases we discuss the requirements on the ELT system in terms of several parameters, including wavelength range, field of view, image quality etc. We discuss the science driver that sets the limits on each parameter. We also discuss specific requirements on instrumentation, site and adaptive optics. In several cases, detailed simulated observations will be required in order to set the requirements. While the example science cases provide a useful guide, we also note that an important goal is to develop a facility that covers a broad parameter space, and maintains flexibility in order to adapt to new scientific directions.