Observations and modeling of energy distributions in the spectra of young stars

Authors

  • A.B. Manapbayeva Al-Farabi Kazakh National University, Kazakstan, Almaty
  • A.K. Kuratova Al-Farabi Kazakh National University, Kazakstan, Almaty
  • K.S. Kuratov Al-Farabi Kazakh National University, Kazakstan, Almaty
  • N.Sh. Alimgazinova Al-Farabi Kazakh National University, Kazakstan, Almaty
  • T. Komesh Xinjiang Astronomical Observatory, Xinjiang, China
  • A.M. Demesinova Al-Farabi Kazakh National University, Kazakstan, Almaty
  • A.Zh. Naurzbaeva Al-Farabi Kazakh National University, Kazakstan, Almaty
  • M.T. Kyzgarina Al-Farabi Kazakh National University, Kazakstan, Almaty

DOI:

https://doi.org/10.26577/rcph-2019-i2-3
        189 55

Keywords:

photometry, spectrum, Herbig Ae / Be stars, energy

Abstract

Investigation of young stars is one of the main directions in astrophysics. Firstly, it is related to the fact that these studies allow us to learn more about the star, about the process of formation and evolution of stars and planets. Astronomers of the different countries carried out that kind of study, however there are still some questions are not clear, in particular, the physical characteristics of young nonstationary stars and certain details of their evolution.

The work shows spectral and photometric observations of Herbig's Ae / Be young stars. The distribution of energy in their spectra was studied based on the photometric data obtained and available in the literature, as well as the results of modeling. As a result of the study of the star IRAS 22150 + 6109, emission features in the spectrum of the star were determined, the geometric characteristics of its protoplanetary disk were determined. In this article, photometric data from specialized catalogs and observational data were used at the Assy-Turgen observatory and at the Tien-Shan astronomical observatory of the Astrophysical Institute named after V.G. Fesenkov (APhIF).

The object of the study are the young stars Ae / Be Herbig.

The research results can be used in astronomy, cosmology, theoretical physics and computational astrophysics.

References

1 J.D. Ilee, J. Fairlamb, R.D. Oudmaijer, I. Mendigutía, van den M.E. Ancker, S. Kraus and H.E. Wheelwright, Monthly Notices of the Royal Astronomical Society, 445, 3723–3736 (2014).

2 J.R. Fairlamb, R.D. Oudmaijer, I. Mendigutía, J.D. Ilee and M.E. Van den Ancker, Monthly Notices of the Royal Astronomical Society, 453, 976-1001 (2015).

3 J. Vural, S. Kraus, A. Kreplin, G. Weigelt, E. Fossat, F. Massi, K. Perraut and F. Vakili Astronomy & Astrophysics, 569, 25 (2014).

4 A.S. Miroshnichenko, C. Rossi, V.F. Polcaro, S. Zharikov, R.J. Rudy, A.V. Kusakin, K.S. Kuratov, A.Zh. Naurzbaeva, N.Sh. Alimgazinova, A.B. Manapbayeva and N. Manset The conf. "The B[e] Phenomenon: Forty Years Of Studies" (Prague, Czech Republic, June 27-July 1, 2016).

5 A.K. Kuratova, A.S. Miroshnichenko, K.S. Kuratov, A. Zh. Naurzbayeva, N.Sh. Alimgazinova and A.B. Manapbayeva, Astronomical Society of the Pacific Conference Series. 508, 229 (2017).

6 S.A. Khokhlov, A.S. Miroshnichenko, S.V. Zharikov, N. Manset, A.A. Arkharov, N. Efimova, S. Klimanov, V.M. Larionov, A.V. Kusakin, R. I. Kokumbaeva, Ch. T. Omarov, K. S. Kuratov, A. K. Kuratova, R. J. Rudy, E. A. Laag, K. B. Crawford, T. K. Swift, R. C. Puetter, R. B. Perry, S. D. Chojnowski, A. Agishev, D. B. Caton, R. L. Hawkins, A. B. Smith, D. E. Reichart, V.V. Kouprianova and J.B. Haislip, Astrophysical Journal. 856, 158-171 (2018). https://doi.org/10.3847/1538-4357/aab49d.

7 H. Van Winckel Astronomical Society of the Pacific Conf. Ser.. 508, 197 (2017).

8 R.D. Oudmaijer and A.S. Miroshnichenko, Astronomical Society of the Pacific Conference Series. 508, 3 (2017).

9 A.S. Miroshnichenko, The Astrophysical Journal. 667, 497-504 (2007).

10 O.V. Zakhozhay, C. del Burgo and V.A. Zakhozhay, Advances in Astronomy and Space Physics 5, 33-38 (2015).

11 T. Jeřábková, D. Korčáková, A. Miroshnichenko, S. Danford, S.V. Zharikov, R. Kříček, P. Zasche, V. Votruba, M. Ńlechta, P. Ńkoda and J. Janík, Astronomy & Astrophysics. 586, A116 (2016).

12 K.S. Kuratov, A.V. Kusakin and D.E. Mkrtichan, Izvestya NAN RK. Ser.phys.-mat. 4, 78-83 (2004). (in Russ).

13 К.S. Kuratov, L.E. Andabayeva and K.G. Zhakusheva, Izvestya NAN RK. Ser.phys.-mat. 4, 23-28 (1994). (in Russ).

14 К.S. Kuratov, Izvestya NAN RK. Ser.phys.-mat. 4, 72-73 (2010). (in Russ).

15 A.K. Kuratova, A.S. Miroshnichenko, К.S. Kuratov, A.Zh. Naurzbaeva, N.Sh. Alimgazinova and A.B. Manapbayeva, Proc. of 10-th internat. conf. “Chaos and structurein nonlinear systems. Theory and experiment”, (Almaty, 2017), p.55-57. (in Russ).

16 S.V. Zharikov and A.S. Miroshnichenko, Astronomical Society of the Pacific Conference Series. 508, 295 (2017).

17 A.S. Miroshnichenko, S.V. Zharikov, S. Danford, N. Manset, D. Korčákov, R. Kříček, M. Ńlechta, Ch.T. Omarov, A.V. Kusakin, K.S. Kuratov and K.N. Grankin, The Astrophysical Journal.809, 129 (2015).

18 J. Kluska, M. Benisty, F. Soulez, J.P. Berger, J.B. Le Bouquin, F. Malbet, B. Lazareff and E. Thiébaut, Astronomy & Astrophysics. 591, A82 (2016).

19 A.B. Manapbayeva, O.V. Zakhozhay, A.K. Kuratova, V.A. Zakhozhay, K.S. Kuratov and A.S. Beisebayeva 16-th Gamow Summer School «Astronomy and Beyond: Astrophysics, cosmology, cosmomicrophysics, astroparticle physics, radioastronomy and astrobiology», (Odessa, Ukraine, 14-20 August, 2016), P. 19.

20 К.S. Kuratov, О.V. Zakhozhay, A.K. Kuratova, A.B. Manapbayeva and N.Sh. Alimgazinova Proc. of 9-th internat. sc. conf. “ Modern progress of physics and fundamental physics’s education», (Almaty, 2016), P. 181. (in Russ).

21 F. Alimardanova, A. S. Miroshnichenko, S. V. Zharikov, R. J. Rudy, N. Manset, A.V. Kusakin, K.S. Kuratov and S.A. Khokhlov, Proceedings of APS. 508, 355-356 (2017).

22 O.V. Zakhozhay, V.A. Zakhozhay, A.S. Miroshnichenko and К.S. Kuratov, Proc. of 10-th internat. conf. “Chaos and structurein nonlinear systems. Theory and experiment”, (Almaty, 2017), p.36-39. (in Russ).

23 O.V. Zakhozhay, A.S. Miroshnichenko, K.S. Kuratov, V.A. Zakhozhay, S.A.Khokhlov, S.V. Zharikov and N. Manset, Proceedings of APS. 508, 191-1959 (2017).

24 K.S. Kuratov, O.V. Zakhozhay, A.S. Miroshnichenko and V.A. Zakhozhay, Odessa Astron. Publ. 28/1, 36 (2015).

25 K.S. Kuratov, Gruppy zvezd s okolozvezdnymi obolochkami (Almaty: Kazakh university, 2018), p. 174.(in Russ.).

26 O.V. Zakhozhay, A.S. Miroshnichenko, K.S. Kuratov et al., Monthly Notices of the Royal Astronomical Society. 477, 977-982 (2018).

Downloads

How to Cite

Manapbayeva, A., Kuratova, A., Kuratov, K., Alimgazinova, N., Komesh, T., Demesinova, A., Naurzbaeva, A., & Kyzgarina, M. (2019). Observations and modeling of energy distributions in the spectra of young stars. Recent Contributions to Physics (Rec.Contr.Phys.), 69(2), 17–26. https://doi.org/10.26577/rcph-2019-i2-3

Issue

Section

Theoretical Physics. Nuclear and Elementary Particle Physics. Astrophysics

Most read articles by the same author(s)

1 2 > >>