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Lincoln Near-Earth Asteroid Research

American astronomical survey for identifying and tracking near-Earth objects

Lincoln Near-Earth Asteroid Research

Summary

American astronomical survey for identifying and tracking near-Earth objects

NEO]]s detected by various projects:

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The Lincoln Near-Earth Asteroid Research (LINEAR) project is a collaboration of the United States Air Force, NASA, and the Massachusetts Institute of Technology's Lincoln Laboratory for the systematic detection and tracking of near-Earth objects. LINEAR was responsible for the majority of asteroid discoveries from 1998 until it was overtaken by the Catalina Sky Survey in 2005. , LINEAR had detected 231,082 new small Solar System bodies, of which at least 2,423 were near-Earth asteroids and 279 were comets. The instruments used by the LINEAR program are located at Lincoln Laboratory's Experimental Test Site (ETS) on the White Sands Missile Range (WSMR) near Socorro, New Mexico.

History

In the late 1970s, the Lincoln Laboratory's Experimental Test Site facility (observatory code 704) was built at White Sands Missile Range. The project's prototype used low-light video cameras. In 1994 a new proposal was made for automated detection of asteroids, this time using newer digital detector technology. The LINEAR project began operating a near-Earth object discovery facility in 1996 using a 1.0 m aperture telescope designed for the Air Force Space Command's Ground-based Electro-Optical Deep Space Surveillance (GEODSS). The wide-field Air Force telescopes were designed for optical observation of Earth-orbiting spacecraft. Initial field tests used a 1024 × 1024 pixel charge-coupled device (CCD) detector. While this CCD detector filled only about one fifth of the telescope's field of view, four near-earth objects were discovered. A 1960 × 2560 pixel CCD which covered the telescope's two-square degree field of view was then installed, and both detectors were used in later tests.

The first LINEAR telescope became fully operational in March 1998. Beginning in October 1999, a second 1.0 m telescope was added to the search effort. In 2002, a 0.5 m telescope equipped with the original CCD was brought on-line to provide follow-up observations for the discoveries made by the two search telescopes. This allowed about 20% more of the sky to be searched each night. Data recorded by the telescopes is sent to a Lincoln Laboratory facility at Hanscom Air Force Base in Lexington, Massachusetts for processing. Detections are then forwarded to the Minor Planet Center.

Discoveries

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In addition to discovering more than 140,000 minor planets, LINEAR is also credited with the discovery, or co-discovery, or rediscovery of several periodic comets, including 11P/Tempel–Swift–LINEAR, 158P/Kowal-LINEAR, 160P/LINEAR (LINEAR 43), 165P/LINEAR (LINEAR 10), and 176P/LINEAR (LINEAR 52, 118401 LINEAR: one of only five objects classified both as comets and asteroids). Other objects discovered include , , and 2004 FH. One of LINEAR's discoveries passed near the Earth on 21 March, 2021

References

References

  1. (22 February 2021). "Asteroid the size of the Golden Gate Bridge will whiz past Earth in March".
  2. "NEO Discovery Statistics". NASA Near Earth Object Program.
  3. "MIT Lincoln Laboratory: LINEAR". MIT Lincoln Laboratory.
  4. "LINEAR – Experimental Test Site". Lincoln Laboratory, MIT.
  5. (1980). "Artificial satellites, minor planets, and the ETS". NASA Sti/Recon Technical Report N.
  6. (1981). "A new asteroid observation and search technique". Publications of the Astronomical Society of the Pacific.
  7. (1994). "Instrumentation in Astronomy VIII". Proceedings of SPIE.
  8. "Lincoln Near-Earth Asteroid Research (LINEAR)". NASA Near Earth Object Program.
  9. (1998). "Results from the Lincoln Near Earth Asteroid Research (LINEAR) Project". American Astronomical Society.
  10. (1999). "A Progress Report on the Lincoln Near Earth Asteroid Research Project". American Astronomical Society.
  11. (2002). "LINEAR Search and Operations Experience". American Astronomical Society.
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