Astronomy:302 Clarissa

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Short description: Main-belt asteroid
302 Clarissa
302Clarissa (Lightcurve Inversion).png
A three-dimensional model of 302 Clarissa based on its light curve
Discovery
Discovered byAuguste Charlois
Discovery date14 November 1890
Designations
(302) Clarissa
A890 VA; 1909 YA
1929 CK1; 1946 UN
1948 ED; 1953 NN
Minor planet categoryMain belt
Orbital characteristics[1]
Epoch 31 July 2016 (JD 2457600.5)
Uncertainty parameter 0
Observation arc124.04 yr (45,305 d) 124.04 yr (45305 d)
|{{{apsis}}}|helion}}2.67 astronomical unit|AU (400.04 Gm)
|{{{apsis}}}|helion}}2.14 AU (319.61 Gm)
2.41 AU (359.82 Gm)
Eccentricity0.11175
Orbital period3.73 yr (1,362.5 d)
Mean anomaly213.798°
Mean motion0° 15m 51.174s / day
Inclination3.41369°
Longitude of ascending node7.85637°
54.5926°
Physical characteristics
Dimensions38.53±3.1 km
Mean density1.5 g cm−3[2]
Rotation period14.381 h (0.5992 d)
Geometric albedo0.0524±0.010
F
Absolute magnitude (H)10.89


Clarissa (minor planet designation: 302 Clarissa) is a typical main belt asteroid.[1] The asteroid was discovered by the French astronomer Auguste Charlois on 14 November 1890 in Nice. The origin of the name is unknown.[3] In 1991, 302 Clarissa was being considered as a possible fly-by target for the Cassini spacecraft, but was later removed from consideration.[4]

This body is orbiting the Sun with a period of 3.73 years and an eccentricity (ovalness) of 0.11. The orbital plane is inclined by 3.4° to the plane of the ecliptic. There are no major planetary resonances near the orbit of 302 Clarissa. It has a retrograde spin with a rotation period of 14.4797 hours. Stellar occultation data provides a size estimate of 43±4 km,[2] while IRAS data gives a diameter of 38.5±3.1 km. It is classified as a F-type asteroid and is probably composed of carbonaceous material.[1]

302 Clarissa provides the eponym for a small collisional asteroid family of mostly C-type asteroids. This group consists of 179 bodies with orbits clustered around 302 Clarissa. The family has a small extend of semimajor axis values, suggesting this is a young group; its estimated age is 56±5 Myr. 70–90% of the objects in this family have a retrograde spin, suggesting the parent body may have possessed a similar rotation.[2] This family is one of five that are candidate sources for the near Earth asteroids 101955 Bennu and 162173 Ryugu.[5]

Spacecraft visits

At present, Clarissa has not been visited by any spacecraft. As of 1991, mission planning for the Cassini–Huygens spacecraft included a flyby (spaceflight) of Clarissa while leaving the inner solar system in November 1998,[6] however due to delays, the launch of Cassini-Huygens was moved from November 1995 to October 1997, thus negating the option to pass near Clarissa. Cassini-Huygens passed by asteroid 2685 Masursky on 23 January 2000 instead.

References

  1. 1.0 1.1 1.2 "302 Clarissa". JPL Small-Body Database. NASA/Jet Propulsion Laboratory. https://ssd.jpl.nasa.gov/sbdb.cgi?sstr=302;cad=1. 
  2. 2.0 2.1 2.2 Lowry, Vanessa C. et al. (September 2020), "Clarissa Family Age from the Yarkovsky Effect Chronology", The Astronomical Journal 160 (3): 127, doi:10.3847/1538-3881/aba4af, 127, Bibcode2020AJ....160..127L 
  3. Schmadel, Lutz D. (November 11, 2013), Dictionary of Minor Planet Names, Berlin Heidelberg: Springer, p. 61, ISBN 9783662066157, https://books.google.com/books?id=eHv1CAAAQBAJ&pg=PA61 
  4. Chevreton, M. et al. (August 1993), "Observations of the asteroid 302 Clarissa by fast multichannel photometer", Planetary and Space Science 41 (8): 563–567, doi:10.1016/0032-0633(93)90076-E, Bibcode1993P&SS...41..563C 
  5. Morate, David et al. (February 2018), "Visible spectroscopy of the Sulamitis and Clarissa primitive families: a possible link to Erigone and Polana", Astronomy & Astrophysics 610: 14, doi:10.1051/0004-6361/201731407, A25, Bibcode2018A&A...610A..25M 
  6. Outward to the Beginning: the CRAF and Cassini Missions of the Mariner Mark 2 Program; NASA Contractor Report CR-183133, 1 June 1988

External links