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Black Hole

Lensing of space time around a black hole. At Oxford we study black holes observationally and theoretically on all size and time scales - it is some of our core work.

Credit: ALAIN RIAZUELO, IAP/UPMC/CNRS. CLICK HERE TO VIEW MORE IMAGES.

Matthias Tecza

HARMONI Instrument Scientist

Research theme

  • Astronomy and astrophysics
  • Instrumentation

Sub department

  • Astrophysics

Research groups

  • Astronomical instrumentation
  • Exoplanet atmospheres
  • Exoplanets and Stellar Physics
  • Extremely Large Telescope
matthias.tecza@physics.ox.ac.uk
Telephone: 01865 (2)73364
Denys Wilkinson Building, room 361G
  • About
  • Teaching
  • Publications

Building the HARMONI engineering model

Proceedings of SPIE Society of Photo-optical Instrumentation Engineers 10702 (2018)

Authors:

T Foster, John Capone, A Earle, A Hidalgo, I Lewis, J Lynn, K O'Brien, M Rodrigues, I Tosh, B Watkins, F Clarke, H Schnetler, Matthias Tecza, Niranjan Thatte

Abstract:

HARMONI (High Angular Resolution MOnolithic Integral field spectrograph)1 is a planned first-light integral field spectrograph for the Extremely Large Telescope. The spectrograph sub-system is being designed, developed, and built by the University of Oxford. The project has just completed the Preliminary Design Review (PDR), with all major systems having nearly reached a final conceptual design. As part of the overall prototyping and assembly, integration, and testing (AIT) of the HARMONI spectrograph, we will be building a full-scale engineering model of the spectrograph. This will include all of the moving and mechanical systems, but without optics. Its main purpose is to confirm the AIT tasks before the availability of the optics, and the system will be tested at HARMONI cryogenic temperatures. By the time of the construction of the engineering model, all of the individual modules and mechanisms of the spectrograph will have been prototyped and cryogenically tested. The lessons learned from the engineering model will then be fed back into the overall design of the spectrograph modules ahead of their development.
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Can the European ELT detect super-Earths? Measuring the contrast limit of an image-slicer spectrograph in a laboratory experiment: an update on progress

SPIE, the international society for optics and photonics 10706 (2018) 107061n

Authors:

Robert M Barnsley, Matthias Tecza
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Design and proto-typing of integral field units for the ELT-PCS test bench spectrograph

SPIE, the international society for optics and photonics 10706 (2018) 107062i

Authors:

Matthias Tecza, Robert M Barnsley, Álvaro Menduiña-Fernández, Takashi Sukegawa
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The Pre-Optics mechanism prototypes for HARMONI

SPIE, the international society for optics and photonics 10706 (2018) 107063n

Authors:

Elvio Hernández, Jose V Gigante, Luis F Rodríguez, José M Herreros, Begoña García-Lorenzo, Evencio Mediavilla, Niranjan Thatte, Ian Bryson, Hermine Schnetler, Fraser Clarke, Matthias Tecza
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Opto-mechanical design of a High Contrast Module (HCM) for HARMONI

SPIE, the international society for optics and photonics 10702 (2018) 107028n

Authors:

F Hénault, A Carlotti, P Rabou, Y Magnard, E Sradler, D Mouillet, G Chauvin, M Bonnefoy, JF Sauvage, K Dohlen, A Vigan, T Fusco, K El Hadi, P Vola, F Clarke, N Thatte, I Bryson, H Schnetler, M Tecza, C Vérinaud
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