Astronomy:1540 Kevola

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1540 Kevola
001540-asteroid shape model (1540) Kevola.png
Shape model of Kevola from its lightcurve
Discovery[1]
Discovered byL. Oterma
Discovery siteTurku Obs.
Discovery date16 November 1938
Designations
(1540) Kevola
Named afterKevola Observatory[2]
1938 WK · 1926 GT
1933 UM · 1933 WR
1936 KL · 1937 QG
1940 EJ
Minor planet categorymain-belt · (outer)[3]
background[4]
Orbital characteristics[1]
Epoch 4 September 2017 (JD 2458000.5)
Uncertainty parameter 0
Observation arc91.23 yr (33,320 days)
|{{{apsis}}}|helion}}3.0937 AU
|{{{apsis}}}|helion}}2.6068 AU
2.8502 AU
Eccentricity0.0854
Orbital period4.81 yr (1,758 days)
Mean anomaly37.259°
Mean motion0° 12m 17.28s / day
Inclination11.971°
Longitude of ascending node52.468°
113.68°
Physical characteristics
Dimensions37.12±13.60 km[5]
40.16±0.59 km[6]
40.22±13.69 km[7]
43.875±0.318 km[8]
44.18±1.7 km[9]
44.22 km (derived)[3]
Rotation period20.071±0.0119 h[10]
20.082±0.001 h[11]
Geometric albedo0.0433±0.004[9]
0.0474 (derived)[3]
0.048±0.008[8]
0.05±0.04[7]
0.053±0.002[6]
0.06±0.05[5]
C(assumed)[3]
Absolute magnitude (H)10.640±0.003 (R)[10] · 10.70[3][7][8] · 10.80[1][6][9] · 10.83[5] · 10.83±0.36[12]


1540 Kevola, provisional designation 1938 WK, is a dark background asteroid from the outer regions of the asteroid belt, approximately 42 kilometers in diameter. It was discovered on 16 November 1938, by astronomer Liisi Oterma at the Iso-Heikkilä Observatory in Turku, Finland.[13] The asteroid was named after the Finnish Kevola Observatory.[2]

Orbit and classification

Kevola is a non-family asteroid of the main belt's background population.[4] It orbits the Sun in the outer asteroid belt at a distance of 2.6–3.1 AU once every 4 years and 10 months (1,758 days). Its orbit has an eccentricity of 0.09 and an inclination of 12° with respect to the ecliptic.[1]

The body's observation arc begins with its first identification as 1926 GT at Heidelberg Observatory in April 1926, more than 12 years prior to its official discovery observation at Turku.[13]

Naming

This minor planet was named for the Finnish Kevola Observatory (064).[2] The official naming citation was published by the Minor Planet Center on 20 February 1976 (M.P.C. 3930).[14]

Physical characteristics

Kevola is an assumed carbonaceous C-type asteroid.[3]

Rotation period

In February 2007, a rotational lightcurve of Kevola was obtained from photometric observations by French amateur astronomer Pierre Antonini. Lightcurve analysis gave a rotation period of 20.082 hours with a brightness variation of 0.23 magnitude ({{{1}}}).[11] Another lightcurve obtained by astronomers at the Palomar Transient Factory in October 2010, gave a concurring period of 20.071 hours with an amplitude of 0.33 magnitude ({{{1}}}).[10]

Diameter and albedo

According to the surveys carried out by the Infrared Astronomical Satellite IRAS, the Japanese Akari satellite and the NEOWISE mission of NASA's Wide-field Infrared Survey Explorer, Kevola measures between 37.12 and 44.18 kilometers in diameter and its surface has an albedo between 0.0433 and 0.06.[5][6][7][8][9]

The Collaborative Asteroid Lightcurve Link derives an albedo of 0.0474 and a diameter of 44.22 kilometers based on an absolute magnitude of 10.7.[3]

References

  1. 1.0 1.1 1.2 1.3 "JPL Small-Body Database Browser: 1540 Kevola (1938 WK)". Jet Propulsion Laboratory. https://ssd.jpl.nasa.gov/sbdb.cgi?sstr=2001540. Retrieved 8 October 2017. 
  2. 2.0 2.1 2.2 Schmadel, Lutz D. (2007). "(1540) Kevola". Dictionary of Minor Planet Names. Springer Berlin Heidelberg. p. 122. doi:10.1007/978-3-540-29925-7_1541. ISBN 978-3-540-00238-3. https://archive.org/details/dictionaryminorp00schm. 
  3. 3.0 3.1 3.2 3.3 3.4 3.5 3.6 "LCDB Data for (1540) Kevola". Asteroid Lightcurve Database (LCDB). http://www.minorplanet.info/PHP/generateOneAsteroidInfo.php?AstInfo=1540%7CKevola. Retrieved 8 October 2017. 
  4. 4.0 4.1 "Asteroid 1540 Kevola – Proper Elements". AstDyS-2, Asteroids – Dynamic Site. https://newton.spacedys.com/astdys/index.php?pc=1.1.6&n=1540. 
  5. 5.0 5.1 5.2 5.3 Nugent, C. R.; Mainzer, A.; Bauer, J.; Cutri, R. M.; Kramer, E. A.; Grav, T. et al. (September 2016). "NEOWISE Reactivation Mission Year Two: Asteroid Diameters and Albedos". The Astronomical Journal 152 (3): 12. doi:10.3847/0004-6256/152/3/63. Bibcode2016AJ....152...63N. 
  6. 6.0 6.1 6.2 6.3 Usui, Fumihiko; Kuroda, Daisuke; Müller, Thomas G.; Hasegawa, Sunao; Ishiguro, Masateru; Ootsubo, Takafumi et al. (October 2011). "Asteroid Catalog Using Akari: AKARI/IRC Mid-Infrared Asteroid Survey". Publications of the Astronomical Society of Japan 63 (5): 1117–1138. doi:10.1093/pasj/63.5.1117. Bibcode2011PASJ...63.1117U.  (online, AcuA catalog p. 153)
  7. 7.0 7.1 7.2 7.3 Nugent, C. R.; Mainzer, A.; Masiero, J.; Bauer, J.; Cutri, R. M.; Grav, T. et al. (December 2015). "NEOWISE Reactivation Mission Year One: Preliminary Asteroid Diameters and Albedos". The Astrophysical Journal 814 (2): 13. doi:10.1088/0004-637X/814/2/117. Bibcode2015ApJ...814..117N. http://adsabs.harvard.edu/cgi-bin/bib_query?bibcode=2015ApJ...814..117N. Retrieved 8 October 2017. 
  8. 8.0 8.1 8.2 8.3 Masiero, Joseph R.; Mainzer, A. K.; Grav, T.; Bauer, J. M.; Cutri, R. M.; Nugent, C. et al. (November 2012). "Preliminary Analysis of WISE/NEOWISE 3-Band Cryogenic and Post-cryogenic Observations of Main Belt Asteroids". The Astrophysical Journal Letters 759 (1): 5. doi:10.1088/2041-8205/759/1/L8. Bibcode2012ApJ...759L...8M. http://adsabs.harvard.edu/cgi-bin/bib_query?bibcode=2012ApJ...759L...8M. Retrieved 8 October 2017. 
  9. 9.0 9.1 9.2 9.3 Tedesco, E. F.; Noah, P. V.; Noah, M.; Price, S. D. (October 2004). "IRAS Minor Planet Survey V6.0". NASA Planetary Data System 12: IRAS-A-FPA-3-RDR-IMPS-V6.0. Bibcode2004PDSS...12.....T. https://sbnarchive.psi.edu/pds3/iras/IRAS_A_FPA_3_RDR_IMPS_V6_0/data/diamalb.tab. Retrieved 22 October 2019. 
  10. 10.0 10.1 10.2 Waszczak, Adam; Chang, Chan-Kao; Ofek, Eran O.; Laher, Russ; Masci, Frank; Levitan, David et al. (September 2015). "Asteroid Light Curves from the Palomar Transient Factory Survey: Rotation Periods and Phase Functions from Sparse Photometry". The Astronomical Journal 150 (3): 35. doi:10.1088/0004-6256/150/3/75. Bibcode2015AJ....150...75W. http://adsabs.harvard.edu/cgi-bin/bib_query?bibcode=2015AJ....150...75W. Retrieved 8 October 2017. 
  11. 11.0 11.1 Behrend, Raoul. "Asteroids and comets rotation curves – (1540) Kevola". Geneva Observatory. http://obswww.unige.ch/~behrend/page4cou.html#001540. Retrieved 8 October 2017. 
  12. Veres, Peter; Jedicke, Robert; Fitzsimmons, Alan; Denneau, Larry; Granvik, Mikael; Bolin, Bryce et al. (November 2015). "Absolute magnitudes and slope parameters for 250,000 asteroids observed by Pan-STARRS PS1 - Preliminary results". Icarus 261: 34–47. doi:10.1016/j.icarus.2015.08.007. Bibcode2015Icar..261...34V. http://adsabs.harvard.edu/cgi-bin/bib_query?bibcode=2015Icar..261...34V. Retrieved 8 October 2017. 
  13. 13.0 13.1 "1540 Kevola (1938 WK)". Minor Planet Center. https://www.minorplanetcenter.net/db_search/show_object?object_id=1540. Retrieved 8 October 2017. 
  14. Schmadel, Lutz D. (2009). "Appendix – Publication Dates of the MPCs". Dictionary of Minor Planet Names – Addendum to Fifth Edition (2006–2008). Springer Berlin Heidelberg. p. 221. doi:10.1007/978-3-642-01965-4. ISBN 978-3-642-01964-7. Bibcode2009dmpn.book.....S. https://archive.org/details/dictionaryminorp2008schm. 

External links