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Astronomy, Doughnuts, and Carrying Capacity

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arxiv 2311.09504 v1 pith:2HBEC6II submitted 2023-11-16 astro-ph.IM physics.soc-phphysics.space-ph

classification astro-ph.IMphysics.soc-phphysics.space-ph
keywords spacecapacitycarryingtermswelladoptambiguousanthropogenic
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I examine the applicability of ecological concepts in discussing issues related to space environmentalism. Terms such as "ecosystem"", "carrying capacity"", and "tipping point" are either ambiguous or well defined but not applicable to orbital space and its contents; using such terms uncritically may cause more confusion than enlightenment. On the other hand, it may well be fruitful to adopt the approach of the Planetary Boundaries Framework, defining trackable metrics that capture the damage to the space environment. I argue that the key metric is simply the number of Anthropogenic Space Objects (ASOs), rather than for example their reflectivity, which is currently doubling every 1.7 years; we are heading towards degree scale separation. Overcrowding of the sky is a problem astronomers and satellite operators have in common.

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  1. An Orbital House of Cards: Frequent Satellite Close Conjunctions

    astro-ph.EP 2025-12 conditional novelty 6.0 of 10

    The CRASH Clock, the expected time between potentially catastrophic close approaches if satellite maneuvers stop, is 5.5 days as of June 2025 versus 164 days in 2018.

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