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NEAR-EARTH OBJECT SURVEY SIMULATIONS WITH A REVISED POPULATION MODEL

  • Moon, Hong-Kyu (Korea Astronomy and Space Science Institute) ;
  • Byun, Yong-Ik (Department of Astronomy, Yonsei University) ;
  • Yim, Hong-Suh (Korea Astronomy and Space Science Institute) ;
  • Raymond, Sean N. (NASA Postdoctoral Fellow, Center for Astrophysics and Space Astronomy, University of Colorado)
  • 발행 : 2008.02.29

초록

We carried out a set of simulations to reproduce the performance of wide-field NEO surveys based on the revised population model of Near Earth Objects (NEOs) constructed by Morbidelli (2006). This is the first time where the new model is carefully compared with discovery statistics, and with the exception of population model, the simulation is identical to the procedure described in Moon et al. (2008). Our simulations show rather large discrepancy between the number of NEO discoveries made by the actual and the simulated surveys. First of all, unlike Bottke et al. (2002)'s, Morbidelli (2006)'s population model overestimates the number of NEOs. However, the latter reproduces orbit distributions of the actual population better. Our analysis suggests that both models significantly underestimate Amors, while overestimating the number of Apollos. Our simulation result implies that substantial modifications of both models are needed for more accurate reproduction of survey observations. We also identify Hungaria region (HU) to be one of the most convincing candidates that supply a large fraction of asteroids to the inner Solar System.

키워드

참고문헌

  1. Bottke, W. F., Morbidelli, A., Jedicke, R., Petit, J.-M., Levison, H. F., Michel, P., & Metcalfe, T. S., 2002, Debiased orbital and size distribution of near-Earth objects, Icarus, 156, 399
  2. Bowell, E., Hapke, B., Dominque, D., Lumme, K., Peltoniemi, J., & Harris, A. W., 1989, Application of photometric models to asteroids. In: R. P. Binzel, T. Gehrels, and M. S.Matthews (Eds.), Asteroids II, University of Arizona Press, Tucson, 524
  3. Giorgini, J. D., Yeomans, D. K., Chamberlin, A. B., Chodas, P. W., Jacobson, R. A., Keesey, M. S., Lieske, J. H., Ostro, S. J., Standish, E. M., & Wimberly, R. N., 1996, JPL's on-line solar system data service, BAAS 28, 1158
  4. Michel, P., Migliorini, P., Morbidelli, A., & Zappala, V., 2000, The population of Mars-crossers: Classification and dynamical evolution, Icarus 145, 332 https://doi.org/10.1006/icar.2000.6358
  5. Migliorini, F., Michel, P., Morbidelli, A., Nesvorny, D., & Zappala, V., 1998, Origin of Earth-crossing asteroids: A quantitative simulation. Science 281, 2022 https://doi.org/10.1126/science.281.5385.2022
  6. Moon, H.-K., Byun, Y.-I., Raymond, S. N., & Spahr, T., 2008, Realistic survey simulations for kilometer class near Earth objects, Icarus, 193, 53 https://doi.org/10.1016/j.icarus.2007.07.022
  7. Morbidelli, A. & Nesvorny, D., 1999, Numerous weak resonances drive asteroids toward terrestrial planets orbits, Icarus 139, 295 https://doi.org/10.1006/icar.1999.6097
  8. Morbidelli, A., Jedicke, R., Bottke, W. F., Michel, P., & Tedesco, E. F., 2002, From magnitudes to diameters: The albedo distribution of near Earth objects and the Earth collision hazard, Icarus, 158, 329 https://doi.org/10.1006/icar.2002.6887
  9. Nesvorny, D. & Morbidelli, A., 1998, An analytic model of three-body mean motion resonances, Celest. Mech. Dynami. Astron., 71, 243 https://doi.org/10.1023/A:1008347020890
  10. Rabinowitz, D. L., Helin, E., Lawrence, K., & Pravdo, S., 2000, A reduced estimates of the number of kilometer-sized near-Earth asteroids, Nature 403, 165 https://doi.org/10.1038/35003128
  11. Stuart, J. S., 2001, A near-Earth asteroid population estimate from the LINEAR survey. Science, 294, 1691 https://doi.org/10.1126/science.1065318
  12. Stuart, J. S., 2003, Observational constraints on the number, albedos, sizes, and impact hazards of the near-Earth asteroids, Doctoral thesis, Massachusetts Institute of Technology, Cambridge, Massachusetts

피인용 문헌

  1. Distribution of the near-earth objects vol.45, pp.6, 2011, https://doi.org/10.1134/S0038094611060049