Accessible does not mean exploitable: HiPERCAM reveals the ultra-fast rotation of 2022 OB 5

arXiv:2605.04784 · astro-ph.EP, astro-ph.IM · Submitted 2026-05-06 · Read on arXiv

Miguel R. Alarcon, Javier Licandro, Miquel Serra-Ricart, David Garcia-Álvarez, Antonio Cabrera-Lavers

astro-ph.EP, astro-ph.IM

Submitted: 2026-05-06

Comments: 11 pages, 6 figures. Accepted for publication in Icarus

Journal ref: Icarus 117153 (2026)

DOI: 10.1016/j.icarus.2026.117153

License: http://creativecommons.org/licenses/by/4.0/

The gist: 2022 OB 5 is a sub-10-metre Apollo-type near-Earth asteroid whose orbital configuration placed it among the most dynamically accessible small bodies in near-Earth space, motivating its selection as

Terminology

Abstract

2022 OB 5 is a sub-10-metre Apollo-type near-Earth asteroid whose orbital configuration placed it among the most dynamically accessible small bodies in near-Earth space, motivating its selection as the target of the first commercial asteroid-prospecting mission. We present its first photometric characterisation, based on high-cadence simultaneous five-band u sg sr si sz s observations obtained with HiPERCAM at the 10.4-m Gran Telescopio Canarias (GTC). Analysis of the light curves yields a rotation period of P rot = 1.542 plus or minus 0.001 min, independently confirmed with observations taken by the Two-meter Twin Telescope, establishing 2022 OB 5 as an ultra-fast rotator. The reflectance spectrum derived from the simultaneous multiband photometry is featureless and moderately red, consistent with the X-complex. Despite its good orbital accessibility, the ultra-fast rotation of 2022 OB 5 poses severe practical challenges for any surface operation with current technology, regardless of compositional interest. This illustrates a population-level challenge: at the sizes and v values most favourable for in-situ missions, fast rotation is the dominant spin state, and rotation period measurement is therefore an indispensable prerequisite for evaluating the resource potential of asteroid mission candidates.

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