Planetary Science

Stardust

347 tracked publications and 15,219 citations from 2003–2026. Stardust / Stardust NExT. Launched 1999. Life-cycle cost: $464M in 2025 dollars. Active Mission Window February 1, 2004 to April 1, 2013: 233 publications, 22 top-10% credit.

Sample Return · h-index 61 · 32 papers with 100+ citations · prime mission ended 2006


Lifetime

Scope Papers published from the first full month after science operations begin through 2 years after the mission ends. Citations are counted through the third calendar year after each paper appears. Methods Papers published from the first full month after science operations begin through 2 years after the prime mission ends. Citations are counted through the third calendar year after each paper appears. Methods Every tracked publication to date, with every citation to date. Methods

Key measures

Active Mission Window · papers February 1, 2004 to April 1, 2013
Tracked publicationsTracked publications: peer-reviewed research papers we found for the mission. The list may not be complete. Methods233
CitationsCitations received by the tracked publications in the selected scope. The two windowed scopes count each paper’s citations only within its citation window. Methods3,717
Mean citations per publicationMean citations: total citations divided by tracked publications in the selected scope. One blockbuster paper can lift it. Methods16
Median citations per publicationMedian citations: the middle paper’s citation count in the selected scope; half the papers have more, half fewer. A single blockbuster sways it less than the mean. Methods9
Uncited publicationsUncited publications: papers with no citations in the selected scope. Methods18 (7.7%)
Top-10% creditTop 10%: among the 10% most-cited papers from this division’s missions, ranked against papers published around the same time. A paper naming several missions is split evenly among the missions in this division that claim it, so counts can be fractional. Methods22 · 2.0% of division
Top-1% creditTop 1%: among the 1% most-cited papers from this division’s missions within the selected window. Not adjusted for publication year. A paper naming several missions is split evenly among the missions in this division that claim it, so counts can be fractional. Methods4 · 3.7% of division
Lifetime indices · every tracked publication to date, in any scope
h-indexh-index: the largest h such that h papers have at least h citations each. It only grows with time, so older missions score higher. Methods61
g-indexg-index: the largest g for which the g most-cited papers together hold at least g² citations. Like the h-index, but it lets the most-cited papers count for more. Methods108
m-index, as of October 4, 2026m-index: a mission’s h-index divided by the years since its first peer-reviewed paper. It falls every 1 January even when nothing else changes, so it belongs to the date shown; it also discounts the long operating life that larger missions paid for. Methods2.5
toritori (total research impact, from ADS): for every paper citing one of the mission’s papers, 1 divided by the citing paper’s reference count times the cited paper’s author count, summed, with self-citations removed. It favors citations from papers with short reference lists and from outside the mission’s own authors. Computed over the tracked citation graph, which can be slightly incomplete. Methods72
riqriq (research impact quotient): 1,000 times the square root of tori, divided by the years since the mission’s first paper. A rate, not a total, so it does not keep growing with age the way the h-index and tori do. Methods354

Tracked publications

  1. Comet 81P/Wild 2 Under a Microscope

    Brownlee, Don, 2006, Sci

    817 citations

  2. Mineralogy and Petrology of Comet 81P/Wild 2 Nucleus Samples

    Zolensky, Michael E., 2006, Sci

    621 citations

  3. Organics Captured from Comet 81P/Wild 2 by the Stardust Spacecraft

    Sandford, Scott A., 2006, Sci

    464 citations

  4. Prebiotic chemicals--amino acid and phosphorus--in the coma of comet 67P/Churyumov-Gerasimenko

    Altwegg, K., 2016, SciA

    446 citations

  5. Cometary glycine detected in samples returned by Stardust

    Elsila, J. E., 2009, M&PS

    395 citations

  6. Isotopic Compositions of Cometary Matter Returned by Stardust

    McKeegan, Kevin D., 2006, Sci

    360 citations

  7. Impact Features on Stardust: Implications for Comet 81P/Wild 2 Dust

    HÖrz, Friedrich, 2006, Sci

    298 citations

  8. Surface of Young Jupiter Family Comet 81 P/Wild 2: View from the Stardust Spacecraft

    Brownlee, Donald E., 2004, Sci

    268 citations

  9. Chondrulelike Objects in Short-Period Comet 81P/Wild 2

    Nakamura, Tomoki, 2008, Sci

    251 citations

  10. Outward Transport of High-Temperature Materials Around the Midplane of the Solar Nebula

    Ciesla, Fred J., 2007, Sci

    241 citations

  11. Comparison of Comet 81P/Wild 2 Dust with Interplanetary Dust from Comets

    Ishii, Hope A., 2008, Sci

    203 citations

  12. Ultra-primitive interplanetary dust particles from the comet 26P/Grigg-Skjellerup dust stream collection

    Busemann, Henner, 2009, E&PSL

    199 citations

  13. Cosmochemistry Special Feature: Establishing a molecular relationship between chondritic and cometary organic solids

    Cody, George D., 2011, PNAS

    188 citations

  14. Elemental Compositions of Comet 81P/Wild 2 Samples Collected by Stardust

    Flynn, George J., 2006, Sci

    183 citations

  15. The primordial nucleus of comet 67P/Churyumov-Gerasimenko

    Davidsson, B. J. R., 2016, A&A

    170 citations

  16. Extreme Deuterium Excesses in Ultracarbonaceous Micrometeorites from Central Antarctic Snow

    Duprat, J., 2010, Sci

    159 citations

  17. Evidence for interstellar origin of seven dust particles collected by the Stardust spacecraft

    Westphal, Andrew J., 2014, Sci

    159 citations

  18. Dynamical Model for the Zodiacal Cloud and Sporadic Meteors

    Nesvorný, David, 2011, ApJ

    150 citations

  19. Comparing Wild 2 particles to chondrites and IDPs

    Zolensky, M., 2008, M&PS

    147 citations

  20. Quantitative organic and light-element analysis of comet 81P/Wild 2 particles using C-, N-, and O-μ-XANES

    Cody, G. D., 2008, M&PS

    147 citations

How we found these papers

We searched NASA’s Astrophysics Data System (ADS) for peer-reviewed articles naming Stardust in the title, abstract or keywords; standard filters drop articles that are not peer-reviewed and magazine pieces. SciX is ADS’s current interface.

((((=abs:"Stardust" AND (abs:"Wild 2" OR abs:"Tempel 1" OR abs:"aerogel" OR abs:"sample return" OR abs:"cometary coma" OR abs:"Dust Flux Monitor" OR abs:"CIDA")) OR (=abs:"Stardust-NExT" OR =title:"Stardust-NExT")) OR =abs:"Stardust spacecraft" OR (=abs:"Wild 2" AND abs:comet AND (abs:sample OR abs:aerogel OR (abs:organic AND abs:solid) OR (abs:particle AND abs:mineral)))) AND NOT title:("interstellar medium" OR "ISM" OR "star formation" OR "reddening" OR "supernova") NOT title:("David Bowie" OR "Ziggy" OR "movie" OR "entertainment")) AND property:refereed AND doctype:article AND pubdate:[2004-02 TO 2040-01] AND NOT bibstem:("A&R" OR "AIASJ" OR "AeAm" OR "AirSp" OR "AsNow" OR "AsUAI" OR "AvWST" OR "C&E" OR "C&T" OR "CAPJ" OR "E&S" OR "ENews" OR "IrAJ" OR "JCos" OR "JRASC" OR "LAstr" OR "MNSSA" OR "Met" OR "NewSc" OR "Orion" OR "PhT" OR "PhTea" OR "PhuZ" OR "PhyOJ" OR "PhyW" OR "PlR" OR "SciAm" OR "SpFl" OR "ZemVs")

Open in SciX

Added after review (2)

  1. Assignment of quinone derivatives as the main compound class composing`interstellar' grains based on both polarity ions detected by the`Cometary and Interstellar Dust Analyser'(CIDA) onboard the spacecraft STARDUST Interstellar dust composition from cruise mass spectra taken by Stardust's dust analyser. Decision 🤖
  2. Phase curve and albedo of asteroid 5535 Annefrank Asteroid Annefrank phase curve and albedo from Stardust's 2002 flyby images. Decision 🤖