MUSE integral field unit: test results on the first out of 24

MUSE (Multi Unit Spectroscopic Explorer) is a second generation VLT panoramic integral field spectrograph developed for the European Southern Observatory (ESO), operating in the visible wavelength range (0.465-0.93 μm). It is composed of 24 identical Integral Field Units (IFU); each one incorporates an advanced image slicer associated with a classical spectrograph and a detector vessel. The Image Slicer subsystem -ISS- is composed of two mirror arrays of 48 spherical elements each. It is made of Zerodur and uses an innovative polishing approach where all individual components are polished together by classical method. The MUSE Spectrograph -SPS-, with fast output focal ratio of f/1.95, implements a Volume Phase Holographic Grating - VPHG. The last subsystem, the Detector Vessel -DV- includes a chip of 4k by 4k 15μm pixels supported by a Vacuum and Cryogenic System - VCS - provided by ESO. The first out of 24 IFUs for MUSE instrument has been manufactured, aligned and tested last months. First, this paper describes the optical design, the manufacturing and test results (image quality, pupil and field of view positioning) of each subsystem independently. Second, we will focus on overall system performance (image quality and positioning) of the spectrograph associated with the detector vessel. At the end, the test results (image quality, positioning, throughput, mechanical interfaces) of the first IFU for MUSE instrument will be reported. Most of them are compliant with requirements that it demonstrates that the manufacturing, integration, alignment and tests processes are mature and gives good confidence for serial production by 24 times applied to MUSE instrument.

[1]  Gary G. Bitterm New Technological Developments , 1987 .

[2]  Johan Kosmalski,et al.  Innovative slicer design and manufacturing , 2006, SPIE Astronomical Telescopes + Instrumentation.

[3]  Roland Bacon,et al.  The second-generation VLT instrument MUSE: science drivers and instrument design , 2004, SPIE Astronomical Telescopes + Instrumentation.

[4]  M. Loupias,et al.  MUSE instrument global performance analysis , 2010, Astronomical Telescopes + Instrumentation.

[5]  Jean-Luis Lizon,et al.  LN2 continuous flow cryostats: a compact vibration free cooling system for single to multiple detector systems , 2010, Astronomical Telescopes + Instrumentation.

[6]  Robert Content New design for integral field spectroscopy with 8-m telescopes , 1997, Other Conferences.

[7]  M. Loupias,et al.  The MUSE project from the dream toward reality , 2010, Astronomical Telescopes + Instrumentation.

[8]  Eric Prieto,et al.  New technological developments in integral field spectroscopy , 2008, Astronomical Telescopes + Instrumentation.

[9]  Johan Kosmalski,et al.  Efficiency measurements performed on the MUSE VPHG , 2010, Astronomical Telescopes + Instrumentation.

[10]  Johan Kosmalski,et al.  MUSE image slicer: test results on largest slicer ever manufactured , 2008, Astronomical Telescopes + Instrumentation.

[11]  F. Laurent,et al.  Optomechanical system of AIT tools to perform tests and integrations of 24 IFU , 2010, Astronomical Telescopes + Instrumentation.

[12]  Harald E. Nicklas,et al.  Analyzing the MUSE opto-mechanics serving as an optical bench in 3D space , 2010, Astronomical Telescopes + Instrumentation.

[13]  F. Laurent,et al.  The calibration unit and detector system tests for MUSE , 2010, Astronomical Telescopes + Instrumentation.

[14]  Roland Bacon,et al.  Design of an Integral Field Unit for MUSE, and Results from Prototyping , 2006 .

[15]  Roland Bacon,et al.  Optical design, manufacturing, and tests of the MUSE image slicer , 2005, SPIE Optical Systems Design.

[16]  David J. Robertson,et al.  Designing, manufacturing, and testing of an advanced image slicer prototype for the James Webb Space Telescope , 2004, SPIE Astronomical Telescopes + Instrumentation.

[17]  Pierre Ferruit,et al.  Optical design, fabrication, and testing a prototype of the NIRSpec IFU , 2004, SPIE Optical Systems Design.