Astrophysics

GALEX

1,573 tracked publications and 91,653 citations from 2003–2026. Galaxy Evolution Explorer. Launched 2003. Life-cycle cost: $282M in 2025 dollars. Active Mission Window September 1, 2003 to July 1, 2015: 780 publications, 53 top-10% credit.

Survey Observatory · h-index 139 · 200 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 September 1, 2003 to July 1, 2015
Tracked publicationsTracked publications: peer-reviewed research papers we found for the mission. The list may not be complete. Methods780
CitationsCitations received by the tracked publications in the selected scope. The two windowed scopes count each paper’s citations only within its citation window. Methods17,522
Mean citations per publicationMean citations: total citations divided by tracked publications in the selected scope. One blockbuster paper can lift it. Methods22
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. Methods13
Uncited publicationsUncited publications: papers with no citations in the selected scope. Methods35 (4.5%)
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. Methods53 · 1.1% 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. Methods6.8 · 1.4% 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. Methods139
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. Methods249
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. Methods5.8
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. Methods212
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. Methods606

Tracked publications

  1. The Galaxy Evolution Explorer: A Space Ultraviolet Survey Mission

    Martin, D. Christopher, 2005, ApJ

    2,406 citations

  2. Star Formation in AEGIS Field Galaxies since z=1.1: The Dominance of Gradually Declining Star Formation, and the Main Sequence of Star-forming Galaxies

    Noeske, K. G., 2007, ApJ

    1,883 citations

  3. The Star Formation Efficiency in Nearby Galaxies: Measuring Where Gas Forms Stars Effectively

    Leroy, Adam K., 2008, AJ

    1,829 citations

  4. The Star Formation Law in Nearby Galaxies on Sub-Kpc Scales

    Bigiel, F., 2008, AJ

    1,718 citations

  5. UV Star Formation Rates in the Local Universe

    Salim, Samir, 2007, ApJS

    1,626 citations

  6. K-Corrections and Filter Transformations in the Ultraviolet, Optical, and Near-Infrared

    Blanton, Michael R., 2007, AJ

    1,551 citations

  7. Spectral Energy Distributions and Multiwavelength Selection of Type 1 Quasars

    Richards, Gordon T., 2006, ApJS

    1,214 citations

  8. Cosmos Photometric Redshifts with 30-Bands for 2-deg²

    Ilbert, O., 2009, ApJ

    1,182 citations

  9. The Calibration and Data Products of GALEX

    Morrissey, Patrick, 2007, ApJS

    1,075 citations

  10. The GALEX Ultraviolet Atlas of Nearby Galaxies

    Gil de Paz, Armando, 2007, ApJS

    777 citations

  11. The green valley is a red herring: Galaxy Zoo reveals two evolutionary pathways towards quenching of star formation in early- and late-type galaxies

    Schawinski, Kevin, 2014, MNRAS

    701 citations

  12. Dust Attenuation Curves in the Local Universe: Demographics and New Laws for Star-forming Galaxies and High-redshift Analogs

    Salim, Samir, 2018, ApJ

    620 citations

  13. The Sloan Digital Sky Survey Quasar Catalog: Sixteenth Data Release

    Lyke, Brad W., 2020, ApJS

    587 citations

  14. BAT AGN Spectroscopic Survey. V. X-Ray Properties of the Swift/BAT 70-month AGN Catalog

    Ricci, C., 2017, ApJS

    583 citations

  15. The All-Wavelength Extended Groth Strip International Survey (AEGIS) Data Sets

    Davis, M., 2007, ApJ

    575 citations

  16. COSMOS2020: A Panchromatic View of the Universe to z∼10 from Two Complementary Catalogs

    Weaver, J. R., 2022, ApJS

    568 citations

  17. X-ray emission from star-forming galaxies - I. High-mass X-ray binaries

    Mineo, S., 2012, MNRAS

    565 citations

  18. Comparison of Hα and UV Star Formation Rates in the Local Volume: Systematic Discrepancies for Dwarf Galaxies

    Lee, Janice C., 2009, ApJ

    553 citations

  19. Optical flares from the tidal disruption of stars by massive black holes

    Strubbe, Linda E., 2009, MNRAS

    522 citations

  20. xCOLD GASS: The Complete IRAM 30 m Legacy Survey of Molecular Gas for Galaxy Evolution Studies

    Saintonge, Amélie, 2017, ApJS

    521 citations

How we found these papers

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

((facility:GALEX OR =abs:"Galaxy Evolution Explorer" OR abs:GALEX)) AND property:refereed AND doctype:article AND pubdate:[2003-09 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

Removed after review (1)

  1. Galex: Exploring the Evolution and Intersection of Disciplines Unrelated data-visualization system that shares the GALEX name. Decision 🤖