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      Schwarzschild-Couder two-mirror telescope for ground-based gamma-ray astronomy

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          Abstract

          Schwarzschild-type aplanatic telescopes with two aspheric mirrors, configured to correct spherical and coma aberrations, are considered for application in gamma-ray astronomy utilizing the ground-based atmospheric Cherenkov technique. We use analytical descriptions for the figures of primary and secondary mirrors and, by means of numerical ray-tracing, we find telescope configurations which minimize astigmatism and maximize effective light collecting area. It is shown that unlike the traditional prime-focus Davies-Cotton design, such telescopes provide a solution for wide field of view gamma-ray observations. The designs are isochronous, can be optimized to have no vignetting across the field, and allow for significant reduction of the plate scale, making them compatible with finely-pixilated cameras, which can be constructed from modern, cost-effective image sensors such as multi-anode PMTs, SiPMs, or image intensifiers.

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          Author and article information

          Journal
          20 August 2007
          Article
          0708.2741
          4d0aa4bc-606f-469b-94f6-eb5a27444f0a
          History
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          4 pages, 6 figures, in Proc. 30th International Cosmic Ray Conference, Merida, Mexico, 2007
          astro-ph

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