Космический эксперимент по определению размера и формы видимого диска Солнца

Бабенко, ЮГ, Вертиполох, АЯ, Гнатык, БИ, Данилевский, ВА
Косм. наука технол. 2002, 8 ;(Supplement2):237-242
https://doi.org/10.15407/knit2002.02s.237
Мова публікації: Русский
Анотація: 
Приводится краткий обзор результатов современных измерений фотосферного диаметра Солнца и его сжатия. Обосновывается необходимость повышения точности измерений этих параметров Солнца, предлагается концепция и структурная схема прибора для измерений углового диаметра и сжатия видимого диска Солнца из-за пределов земной атмосферы.
References: 
1. Gurtovenko E. A. (Ed.) Variations in the Global Characteristics of the Sun, 304 p. (Nauk. Dumka, Kiev, 1992) [in Russian].
2. Schou J., Kosovichev A. G., Goode P. R., Dziembowski W. A. Determination of the Sun’s seismic radius from the SOHO Michelson Doppler Imager. Astroph. J., 489, L197-L200 (1997).
3. Antia H. M. Estimate of solar radius from f-mode frequencies. Astron. and Astroph., 330, 336-340 (1998).
4. Guenther D. B., Demarque P., Kim Y.-C., Pinsonneault M. H. Standard solar model. Astroph. J., 387, 372-393 (1992).
5. Danylevsky V. O. The solar diameter determination from data of the 1991 July 11 solar eclipse photoelectric observation: Proceedings of the 1999 solar eclipse workshop. Contrib. Astron. Obs. Skalnate Pleso, 28 (3), 201-209 (1999).
6. Laclare F., Delmas C., Coin J. R., Irbah A. Measurements and variations of the solar diameter. Solar Physics, 166, 211-229 (1996).
7. Irbah A., Laclare F., Borgnino J., Merlin G. Solar diameter measurement with Salern Observatory astrolabe and atmospheric turbulensce effect. Solar Physics, 149, 213-230 (1994).
8. Toulmonde M. The diameter of the Sun over the past three centuries. Astron. and Astrophys., 325, 1174-1178 (1997).
9. Sveshnikov M. L. Solar-Radius Variations from Transits of Mercury Across the Solar Disk. Pis'ma v Astron. zhurn., 28 (2), 133-139 (2002) [in Russian].
10. White O. R. (Ed.) The solar output and its variation, 560 p. (Mir, Moscow, 1980) [in Russian].
11. Ulrich R. K., Bartello L. Solar-cycle dependence of the Sun's apparent radius in the neutral iron spectral line at 525 nm. Nature, 377 (6546), 214–215 (1995).
12. Rozelot J. P., Godier S., Lefebvre S. On the theory of the oblateness of the Sun. Solar Physics, 198, 223–240 (2001).
13. Dicke R. H. The solar oblateness and the gravitational quadrupole moment. Astrophys. J., 159, 1–24 (1970).
14. Godier S., Rozelot J. P. A new outlook on the “differential theory” of the solar quadrupole moment and oblateness. Solar Physics, 199, 217–229 (2001).
15. Rösch J., Rozelot J. P., Deslandes H. A new estimate of the quadrupole moment of the Sun. Solar Physics, 165, 1–11 (1996).
16. Sofia S., Heaps W., Twigg L.W. The solar diameter and oblateness measured by the solar disk sextant on the 1992 september 30 balloon flight. Astrophys. J., 427, 1048–1052 (1994).
17. Dicke R. H., Khun J. R., Libbrecht K. G. The variable oblateness of the Sun: Measurement of 1984. Astrophys. J., 311, 1025–1030 (1986).
18. Maier E., Twigg L., Sofia S. Preliminary results of a balloon flight of the solar disk sextant. Astrophys. J., 389, 447–452 (1992).
19. Paterno L., Sofia S. EUDOSSO: a space project for solar oscillations and long term variability relevant to climatic changes. Solar Physics, 152, 303–308 (1994).
20. Emilio M., Khun J. R., Bush R. I., Scherrer P. On the Constancy of the solar diameter. Astrophys. J., 543, 1007–1010 (2000).

21. Dame L., Herse M., Thuillier G., et al. Picard: simultaneous measurements of the solar diameter, differential rotation, solar constant and their variations. Adv. in Space Res., 24 (2), 205–214 (1999).