Tashanta as a promising astropoint of the Altai mountains: the first results of the astroclimate study
- Authors: Bolbasova L.А.1, Kopylov E.A.1,2, Potanin S.А.2,3
-
Affiliations:
- Zuev Institute of Atmospheric Optics, Siberian Branch, Russian Academy of Science
- Insitute of Astronomy, Russian Academy of Sciences
- Sternberg Astronomical Institute, Lomonosov Moscow State University
- Issue: Vol 101, No 7 (2024)
- Pages: 672-680
- Section: Articles
- URL: https://cardiosomatics.ru/0004-6299/article/view/647693
- DOI: https://doi.org/10.31857/S0004629924070099
- EDN: https://elibrary.ru/ITZPYG
- ID: 647693
Cite item
Abstract
For the Tashanta point, 49°43ʹ4ʺN, 89°11ʹ31ʺE, Gorny Altai, data from continuous measurements of astroclimatic parameters of the surface layer, monthly average values of the total cloud cover, suspended water vapor from the ERA5 atmospheric reanalysis database and primary measurements of the altitude distribution of turbulence are presented. The results show unique astroclimatic and operational conditions, which probably make it one of the best places in the Russian Federation for submillimeter and optical range observatories.
Keywords
Full Text

About the authors
L. А. Bolbasova
Zuev Institute of Atmospheric Optics, Siberian Branch, Russian Academy of Science
Author for correspondence.
Email: astrojourn@pran.ru
Russian Federation, Tomsk
E. A. Kopylov
Zuev Institute of Atmospheric Optics, Siberian Branch, Russian Academy of Science; Insitute of Astronomy, Russian Academy of Sciences
Email: astrojourn@pran.ru
Russian Federation, Tomsk; Moscow
S. А. Potanin
Insitute of Astronomy, Russian Academy of Sciences; Sternberg Astronomical Institute, Lomonosov Moscow State University
Email: astrojourn@pran.ru
Russian Federation, Moscow; Moscow
References
- Ю. Ю. Балега и др., Известия вузов. Радиофизика 63, № 7, 533–566 (2020).
- M. J. Rioja, R. Dodson, Astron. and Astrophys. Rev. 28, 1–79 (2020).
- P. Tremblin, N. Schneider, V. Minier, G. Al. Durand and J. Urban, Astron. and Astrophys. A65, 548 (2012).
- Yong Zhao, Fan Yang, Xiaodian Chen, Xian Zhang, Jifang Ma, Xianghui Kong, Xiaoting Fu, Ruiyue Li, Yong Wei, Zhonghua Yao, Fei He, Jun Pan and Licai Deng, Astron. and Astrophys. A34, 663 (2022).
- В. Б. Хайкин, А. Ю. Шиховцев, В. Е. Шмагин, М. К. Лебедев, Е. А. Копылов, В. П. Лукин, П. Г. Ковадло, Журнал радиоэлектроники 7, 73 (2022).
- I. I. Zinchenko, A. V. Lapinov, V. F. Vdovin, P. M. Zemlyanukha, T. A. Khabarova, Applied Sciences 13(21), 11706 (2023).
- A. Otarola, C. De Breuck, T. Travouillon, S. Matsushita, L.-Å. Nyman, A. Wootten, S. J. E. Radford, M. Sarazin, F. Kerber, and J. P. Pérez-Beaupuits, Publications of the Astronomical Society of the Pacific 131, 998, 131 045001 (2019).
- В. И. Бурнашев, Земля и вселенная 6, 78–90 (2010).
- Е. Ю. Мордвин и др., Известия Российской Академии Наук. Серия физическая 86, № 3, 452–456 (2022).
- A. Yu. Shikhovtsev, M. A. Ibragimov, K. E. Kirichenko, E. A. Kopylov, P. G. Kovadlo, Proc. SPIE 12780, 127800R (2023).
- С. А. Потанин, М. В. Корнилов, А. Д. Саввин, Б. С. Сафонов, М. А. Ибрагимов, Е. А. Копылов, М. А. Наливкин, В. Е. Шмагин, Л. Х. Ху, Н. Т. Тао, Астрофизический бюллетень 77, № 2, 241–249 (2022).
- L. A Bolbasova, A. Yu Shikhovtsev, S. A. Ermakov, Monthly Not. Roy. Astron. Soc. 520, 3, 4336–4344 (2023).
- Ming-Shuai Li, Rui Li, Na Wang, Xing-Wu Zheng, Research in Astronomy and Astrophysics 20, 12, 20 (2020).
- Ю. Ю. Балега, Д. К.-С. Батаев, Г. М. Бубнов, В. Ф. Вдовин и др., Доклады Российской академии наук. Физика, технические науки 502, № 1, 5–9 (2022).
- А. Ю. Шиховцев, В. Б. Хайкин, А. П. Миронов, П. Г. Ковадл, Оптика атмосферы и океана 35, № 01, 67–73 (2022).
- B. Nikolic, R. C. Bolton, S. F. Graves, R. E. Hills and J. S. Richer, Astron. and Astrophys. A104, 552 (2013).
- L. T. Maud, R. P. J. Tilanus, T. A. van Kempen, M. R. Hogerheijde, et al., Astron. and Astrophys. A121, 605 (2017).
Supplementary files
