Small telescopes being effective: MAGIC or not?

Author:

Afanasiev Victor L1,Malygin Eugene A1ORCID,Shablovinskaya Elena S12ORCID,Uklein Roman I1ORCID,Amirkhanyan Vladimir R1,Perepelitsyn Alexander E1,Afanasieva Irina V1ORCID

Affiliation:

1. Special Astrophysical Observatory of RAS , Nizhny Arkhyz 369167 , Russia

2. Instituto de Estudios Astrofísicos, Facultad de Ingeniería y Ciencias, Universidad Diego Portales , Santiago, Región Metropolitana 8370191 , Chile

Abstract

Abstract The paper describes the MAGIC multimode focal reducer (Monitoring of Active Galaxies by Investigation of their Cores), commissioned on the 1-m Zeiss-1000 telescope of the Special Astrophysical Observatory of the Russian Academy of Sciences in 2020 September. Three observational modes are currently realized: photometry, polarimetry, and long-slit spectroscopy. Reducing the focal length makes it possible to obtain a sufficiently large field of view for photometry and a large slit height for spectroscopy of ∼12′ , as well as a large field of view for polarimetry with a quadrupole Wollaston prism of ∼6${_{.}^{\prime}}$4. This feature makes the complex study of extended nebulae and galaxies efficient. The MAGIC capabilities are presented in examples of observations of various astronomical objects. The spectral mode in the range of 4000–7200 ÅÅ provides the spectral resolution R ∼ 1000; for a starlike target up to 14 mag in medium-band filters with a seeing of 1″ for 20 min of total exposure, the photometry accuracy is better than 0.01 mag and the polarization accuracy is better than 0.6 per cent. Especially for the new focal reducer, an offset guide and a position angle rotation system were implemented. The results of the modernization of the baffle system in the optical scheme of the telescope for the suppression of scattered light are also described.

Publisher

Oxford University Press (OUP)

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