The Discovery and Evolution of a Possible New Epoch of Cometary Activity by the Centaur (2060) Chiron

Fuente: arXiv
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Main Authors: Dobson, Matthew M., Schwamb, Megan E., Fitzsimmons, Alan, Schambeau, Charles, Beck, Aren, Denneau, Larry, Erasmus, Nicolas, Heinze, A. N., Shingles, Luke J., Siverd, Robert J., Smith, Ken W., Tonry, John L., Weiland, Henry, Young, David. R., Kelley, Michael S. P., Lister, Tim, Bernardinelli, Pedro H., Ferrais, Marin, Jehin, Emmanuel, Fedorets, Grigori, Benecchi, Susan D., Verbiscer, Anne J., Murtagh, Joseph, Duffard, Rene, Gomez, Edward, Chatelain, Joey, Greenstreet, Sarah
Format: Preprint
Published: 2024
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author Dobson, Matthew M.
Schwamb, Megan E.
Fitzsimmons, Alan
Schambeau, Charles
Beck, Aren
Denneau, Larry
Erasmus, Nicolas
Heinze, A. N.
Shingles, Luke J.
Siverd, Robert J.
Smith, Ken W.
Tonry, John L.
Weiland, Henry
Young, David. R.
Kelley, Michael S. P.
Lister, Tim
Bernardinelli, Pedro H.
Ferrais, Marin
Jehin, Emmanuel
Fedorets, Grigori
Benecchi, Susan D.
Verbiscer, Anne J.
Murtagh, Joseph
Duffard, Rene
Gomez, Edward
Chatelain, Joey
Greenstreet, Sarah
author_facet Dobson, Matthew M.
Schwamb, Megan E.
Fitzsimmons, Alan
Schambeau, Charles
Beck, Aren
Denneau, Larry
Erasmus, Nicolas
Heinze, A. N.
Shingles, Luke J.
Siverd, Robert J.
Smith, Ken W.
Tonry, John L.
Weiland, Henry
Young, David. R.
Kelley, Michael S. P.
Lister, Tim
Bernardinelli, Pedro H.
Ferrais, Marin
Jehin, Emmanuel
Fedorets, Grigori
Benecchi, Susan D.
Verbiscer, Anne J.
Murtagh, Joseph
Duffard, Rene
Gomez, Edward
Chatelain, Joey
Greenstreet, Sarah
contents Centaurs are small Solar System objects on chaotic orbits in the giant planet region, forming an evolutionary continuum with the Kuiper belt objects and Jupiter-family comets. Some Centaurs are known to exhibit cometary activity, though unlike comets this activity tends not to correlate with heliocentric distance and the mechanism behind it is currently poorly understood. We utilize serendipitous observations from the Asteroid Terrestrial-impact Last Alert System (ATLAS), Zwicky Transient Facility (ZTF), Panoramic Survey Telescope and Rapid Response System (Pan-STARRS), Dark Energy Survey (DES), and Gaia in addition to targeted follow-up observations from the Las Cumbres Observatory, TRAnsiting Planets and PlanetesImals Small Telescope South (TRAPPIST-South), and Gemini North telescope to analyze an unexpected brightening exhibited by the known active Centaur (2060) Chiron in 2021. This is highly indicative of a cometary outburst. As of 2023 February, Chiron has still not returned to its pre-brightening magnitude. We find Chiron's rotational lightcurve, phase curve effects, and possible high-albedo surface features to be unlikely causes of this observed brightening. We consider the most likely cause to be an epoch of either new or increased cometary activity, though we cannot rule out a possible contribution from Chiron's reported ring system, such as a collision of as-yet unseen satellites shepherding the rings. We find no evidence for coma in our Gemini or TRAPPIST-South observations, though this does not preclude the possibility that Chiron is exhibiting a coma that is too faint for observation or constrained to the immediate vicinity of the nucleus.
format Preprint
id arxiv_https___arxiv_org_abs_2407_14410
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The Discovery and Evolution of a Possible New Epoch of Cometary Activity by the Centaur (2060) Chiron
Dobson, Matthew M.
Schwamb, Megan E.
Fitzsimmons, Alan
Schambeau, Charles
Beck, Aren
Denneau, Larry
Erasmus, Nicolas
Heinze, A. N.
Shingles, Luke J.
Siverd, Robert J.
Smith, Ken W.
Tonry, John L.
Weiland, Henry
Young, David. R.
Kelley, Michael S. P.
Lister, Tim
Bernardinelli, Pedro H.
Ferrais, Marin
Jehin, Emmanuel
Fedorets, Grigori
Benecchi, Susan D.
Verbiscer, Anne J.
Murtagh, Joseph
Duffard, Rene
Gomez, Edward
Chatelain, Joey
Greenstreet, Sarah
Earth and Planetary Astrophysics
Centaurs are small Solar System objects on chaotic orbits in the giant planet region, forming an evolutionary continuum with the Kuiper belt objects and Jupiter-family comets. Some Centaurs are known to exhibit cometary activity, though unlike comets this activity tends not to correlate with heliocentric distance and the mechanism behind it is currently poorly understood. We utilize serendipitous observations from the Asteroid Terrestrial-impact Last Alert System (ATLAS), Zwicky Transient Facility (ZTF), Panoramic Survey Telescope and Rapid Response System (Pan-STARRS), Dark Energy Survey (DES), and Gaia in addition to targeted follow-up observations from the Las Cumbres Observatory, TRAnsiting Planets and PlanetesImals Small Telescope South (TRAPPIST-South), and Gemini North telescope to analyze an unexpected brightening exhibited by the known active Centaur (2060) Chiron in 2021. This is highly indicative of a cometary outburst. As of 2023 February, Chiron has still not returned to its pre-brightening magnitude. We find Chiron's rotational lightcurve, phase curve effects, and possible high-albedo surface features to be unlikely causes of this observed brightening. We consider the most likely cause to be an epoch of either new or increased cometary activity, though we cannot rule out a possible contribution from Chiron's reported ring system, such as a collision of as-yet unseen satellites shepherding the rings. We find no evidence for coma in our Gemini or TRAPPIST-South observations, though this does not preclude the possibility that Chiron is exhibiting a coma that is too faint for observation or constrained to the immediate vicinity of the nucleus.
title The Discovery and Evolution of a Possible New Epoch of Cometary Activity by the Centaur (2060) Chiron
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2407.14410