Space Mission Options for Reconnaissance and Mitigation of Asteroid 2024 YR4

Fuente: arXiv
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Autores principales: Barbee, Brent W., Vavrina, Matthew A., Bull, Rylie, Rudolph, Adrienne, Farnocchia, Davide, TerBeek, Russell, Atchison, Justin, Lyzhoft, Joshua, Dotson, Jessie, King, Patrick, Chodas, Paul W., Graninger, Dawn, Mink, Ronald G., Kumamoto, Kathryn M., Pearl, Jason M., Burkey, Mary, Santistevan, Isaiah, Plesko, Catherine S., Caldwell, Wendy K., Harwell, Megan
Formato: Preprint
Publicado: 2025
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author Barbee, Brent W.
Vavrina, Matthew A.
Bull, Rylie
Rudolph, Adrienne
Farnocchia, Davide
TerBeek, Russell
Atchison, Justin
Lyzhoft, Joshua
Dotson, Jessie
King, Patrick
Chodas, Paul W.
Graninger, Dawn
Mink, Ronald G.
Kumamoto, Kathryn M.
Pearl, Jason M.
Burkey, Mary
Santistevan, Isaiah
Plesko, Catherine S.
Caldwell, Wendy K.
Harwell, Megan
author_facet Barbee, Brent W.
Vavrina, Matthew A.
Bull, Rylie
Rudolph, Adrienne
Farnocchia, Davide
TerBeek, Russell
Atchison, Justin
Lyzhoft, Joshua
Dotson, Jessie
King, Patrick
Chodas, Paul W.
Graninger, Dawn
Mink, Ronald G.
Kumamoto, Kathryn M.
Pearl, Jason M.
Burkey, Mary
Santistevan, Isaiah
Plesko, Catherine S.
Caldwell, Wendy K.
Harwell, Megan
contents Near-Earth asteroid 2024 YR4 was discovered on 2024-12-27 and its probability of Earth impact in December 2032 peaked at about 3% on 2025-02-18. Additional observations ruled out Earth impact by 2025-02-23. However, the probability of lunar impact in December 2032 then rose, reaching about 4% by the end of the apparition in May 2025. James Webb Space Telescope (JWST) observations on 2025-03-26 estimated the asteroid's diameter at 60 +/- 7 m. Studies of 2024 YR4's potential lunar impact effects suggest lunar ejecta could increase micrometeoroid debris flux in low Earth orbit up to 1000 times above background levels over just a few days, possibly threatening astronauts and spacecraft. In this work, we present options for space missions to 2024 YR4 that could be utilized if lunar impact is confirmed. We cover flyby & rendezvous reconnaissance, deflection, and robust disruption of the asteroid. We examine both rapid-response and delayed launch options through 2032. We evaluate chemical and solar electric propulsion, various launch vehicles, optimized deep space maneuvers, and gravity assists. Re-tasking extant spacecraft and using built spacecraft not yet launched are also considered. The best reconnaissance mission options launch in late 2028, leaving only approximately three years for development at the time of this writing in August 2025. Deflection missions were assessed and appear impractical. However, kinetic robust disruption missions are available with launches between April 2030 and April 2032. Nuclear robust disruption missions are also available with launches between late 2029 and late 2031. Finally, even if lunar impact is ruled out there is significant potential utility in deploying a reconnaissance mission to characterize the asteroid.
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id arxiv_https___arxiv_org_abs_2509_12351
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Space Mission Options for Reconnaissance and Mitigation of Asteroid 2024 YR4
Barbee, Brent W.
Vavrina, Matthew A.
Bull, Rylie
Rudolph, Adrienne
Farnocchia, Davide
TerBeek, Russell
Atchison, Justin
Lyzhoft, Joshua
Dotson, Jessie
King, Patrick
Chodas, Paul W.
Graninger, Dawn
Mink, Ronald G.
Kumamoto, Kathryn M.
Pearl, Jason M.
Burkey, Mary
Santistevan, Isaiah
Plesko, Catherine S.
Caldwell, Wendy K.
Harwell, Megan
Instrumentation and Methods for Astrophysics
Earth and Planetary Astrophysics
Space Physics
Near-Earth asteroid 2024 YR4 was discovered on 2024-12-27 and its probability of Earth impact in December 2032 peaked at about 3% on 2025-02-18. Additional observations ruled out Earth impact by 2025-02-23. However, the probability of lunar impact in December 2032 then rose, reaching about 4% by the end of the apparition in May 2025. James Webb Space Telescope (JWST) observations on 2025-03-26 estimated the asteroid's diameter at 60 +/- 7 m. Studies of 2024 YR4's potential lunar impact effects suggest lunar ejecta could increase micrometeoroid debris flux in low Earth orbit up to 1000 times above background levels over just a few days, possibly threatening astronauts and spacecraft. In this work, we present options for space missions to 2024 YR4 that could be utilized if lunar impact is confirmed. We cover flyby & rendezvous reconnaissance, deflection, and robust disruption of the asteroid. We examine both rapid-response and delayed launch options through 2032. We evaluate chemical and solar electric propulsion, various launch vehicles, optimized deep space maneuvers, and gravity assists. Re-tasking extant spacecraft and using built spacecraft not yet launched are also considered. The best reconnaissance mission options launch in late 2028, leaving only approximately three years for development at the time of this writing in August 2025. Deflection missions were assessed and appear impractical. However, kinetic robust disruption missions are available with launches between April 2030 and April 2032. Nuclear robust disruption missions are also available with launches between late 2029 and late 2031. Finally, even if lunar impact is ruled out there is significant potential utility in deploying a reconnaissance mission to characterize the asteroid.
title Space Mission Options for Reconnaissance and Mitigation of Asteroid 2024 YR4
topic Instrumentation and Methods for Astrophysics
Earth and Planetary Astrophysics
Space Physics
url https://arxiv.org/abs/2509.12351