Hayabusa2 SCI impact

Hayabusa2 SCI impact is catalogued in this registry as an impact-site, held in the frame of 162173 Ryugu (1999 JU3), from Artificial impact sites (curated).

Registry id IMP_HAYABUSA2_SCI · source layer impacts · provenance PROCESSED — derived deterministically from source catalogues (unit, frame and epoch conversions, cross-source reconciliation) — no value invented

Exists from 2019-04-05 00:00:00 UTC (JD 2458578.5) — no end date is recorded.

Open Hayabusa2 SCI impact in the live scene → The scene composes a position for any date and is where a figure becomes a picture. It downloads the whole catalogue first: measured against the built product, an object outside the core resolves after about 16 s over a local network and about 147 s over a 4 Mbit link, having transferred roughly 70 MB. If you cannot wait that long, this page is the answer.

Classification

Kindimpact-site
Originartificial (made by humans)
Planetary protectiontarget SBDB_20162173 · contact class surface · COSPAR category unclassified_body under the policy in force at launch (unclassified_body under the 2026 policy) · documentation: undocumented — a DOCUMENTATION fact, never a compliance verdict

The catalogue's own note

A 2 kg copper projectile (~2 km/s) made a ~15–20 m artificial crater on Ryugu; imaged by Hayabusa2. science.org/doi/10.1126/science.aaz1701 [public record — NASA/LROC/HiRISE]

Reproduced as the source wrote it. Author-year citations link to their DOI where one is registered.

What this registry does not know about it

These are absences in the catalogues aggregated here, not measurements of zero, and not statements that the quantity is unknown to science:

Where this record comes from

DatabaseArtificial impact sites (curated)
AuthorityNASA NSSDCA · LROC (Wagner et al. 2017) · HiRISE · mission pages
LicencePublic record
How it enteredCurated data-as-code (src/ingest/catalogs/impacts.ts)
CoverageThe located human-made impact craters/scars on the Moon, Mars and Mercury, surface-fixed at their measured lat/lon, each linking its high-resolution image

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