4.7 Article

Spectral properties of near-Earth objects with low-Jovian Tisserand invariant

期刊

出版社

OXFORD UNIV PRESS
DOI: 10.1093/mnras/stab2561

关键词

minor planets, asteroids: general; methods: observational; methods: numerical; celestial mechanics; techniques: spectroscopic

资金

  1. National Aeronautics and Space Administration, Office of Space Science, Planetary Astronomy Program [NCC 5-538]
  2. NASA [09-NEOO009-0001]
  3. National Science Foundation [0506716, 0907766]
  4. Romanian National Authority for Scientific Research -UEFISCDI [PN-III-P1-1.1-TE-2019-1504]
  5. ESA

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This study examined the spectral characteristics of near-Earth objects with low Jupiter-Tisserand invariant values, revealing that 56.2% exhibit comet-like spectral features, with a higher prevalence for objects with T-J <= 2.8.
The near-Earth objects with low-Jovian Tisserand invariant (T-J) represent about 9 per cent of the known objects orbiting in the near-Earth space, being subject of numerous planetary encounters and large temperature variations. We aim to make a spectral characterization for a large sample of NEOs with T-J <= 3.1. Consequently, we can estimate the fraction of bodies with a cometary origin. We report new spectral observations for 26 low-T-J NEOs. The additional spectra, retrieved from different public data bases, allowed us to perform the analysis over a catalogue of 150 objects. We classified them with respect to Bus-DeMeo taxonomic system. The results are discussed regarding their orbital parameters. The taxonomic distribution of low-T-J NEOs differs from the entire NEOs population. Consequently, T-J similar to 3 can act as a composition border too. We found that 56.2 per cent of low-T-J NEOs have comet-like spectra and they become abundant (79.7 per cent) for T-J <= 2.8. 16 D-type objects have been identified in this population, distributed on orbits with an average T-J = 2.65 +/- 0.6. Using two dynamical criteria, together with the comet-like spectral classification as an identification method and by applying an observational bias correction, we estimate that the fraction of NEOs with a cometary nature and H is an element of (14, 21) mag has the lower and upper bounds (1.5 +/- 0.15) and (10.4 +/- 2.2) per cent. Additionally, our observations show that all extreme cases of low-perihelion asteroids (q <= 0.3 au) belong to S-complex.

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