Heliophysics

SNOE

54 tracked publications and 1,973 citations from 1999–2024. Student Nitric Oxide Explorer. Launched 1998. Life-cycle cost: $26M in 2025 dollars. Active Mission Window April 1, 1998 to October 1, 2005: 22 publications, 0 top-10% credit.

Remote Sensing Observatory · h-index 28 · 3 papers with 100+ citations · prime mission ended 1999


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 April 1, 1998 to October 1, 2005
Tracked publicationsTracked publications: peer-reviewed research papers we found for the mission. The list may not be complete. Methods22
CitationsCitations received by the tracked publications in the selected scope. The two windowed scopes count each paper’s citations only within its citation window. Methods185
Mean citations per publicationMean citations: total citations divided by tracked publications in the selected scope. One blockbuster paper can lift it. Methods8.4
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. Methods7.5
Uncited publicationsUncited publications: papers with no citations in the selected scope. Methods0 (0%)
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. Methods0 · 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. Methods0 · 0% 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. Methods28
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. Methods43
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. Methods1.0
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. Methods16
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. Methods155

Tracked publications

  1. Global observations of nitric oxide in the thermosphere

    Barth, C. A., 2003, JGRA

    138 citations

  2. An Estimate of the Sun's ROSAT-PSPC X-Ray Luminosities Using SNOE-SXP Measurements

    Judge, Philip G., 2003, ApJ

    122 citations

  3. A model of nitric oxide in the lower thermosphere

    Bailey, Scott M., 2002, JGRA

    102 citations

  4. Response of the Martian thermosphere/ionosphere to enhanced fluxes of solar soft X rays

    Fox, J. L., 2004, JGRA

    93 citations

  5. Empirical model of nitric oxide in the lower thermosphere

    Marsh, D. R., 2004, JGRA

    92 citations

  6. NRLMSIS 2.1: An Empirical Model of Nitric Oxide Incorporated Into MSIS

    Emmert, J. T., 2022, JGRA

    90 citations

  7. Effect of solar soft X-rays on the lower ionosphere

    Solomon, Stanley C., 2001, GeoRL

    75 citations

  8. Auroral production of nitric oxide measured by the SNOE satellite

    Solomon, Stanley C., 1999, GeoRL

    69 citations

  9. Observations of the 5-day planetary wave in PMC measurements from the Student Nitric Oxide Explorer Satellite

    Merkel, A. W., 2003, GeoRL

    66 citations

  10. Observations of polar mesospheric clouds by the Student Nitric Oxide Explorer

    Bailey, Scott M., 2005, JGRD

    65 citations

  11. Measurements of the solar soft X-ray irradiance by the Student Nitric Oxide Explorer: First analysis and underflight calibrations

    Bailey, S. M., 2000, JGR

    63 citations

  12. Joule heating and nitric oxide in the thermosphere

    Barth, C. A., 2009, JGRA

    61 citations

  13. Solar-terrestrial coupling: Solar soft X-rays and thermospheric nitric oxide

    Barth, Charles A., 1999, GeoRL

    60 citations

  14. A new model of solar EUV irradiance variability 2. Comparisons with empirical models and observations and implications for space weather

    Lean, J. L., 2003, JGRA

    52 citations

  15. Thermospheric nitric oxide variability induced by nonmigrating tides

    Oberheide, J., 2008, GeoRL

    48 citations

  16. Recent advances in observations and modeling of the solar ultraviolet and X-ray spectral irradiance

    Woods, Thomas N., 2008, AdSpR

    46 citations

  17. Comparison of a thermospheric photochemical model with Student Nitric Oxide Explorer (SNOE) observations of nitric oxide

    Barth, C. A., 2004, JGRA

    45 citations

  18. Global observations of thermospheric temperature and nitric oxide from MIPAS spectra at 5.3 μm

    Bermejo-Pantaleón, D., 2011, JGRA

    43 citations

  19. The Outer Solar Atmosphere during the Maunder Minimum: A Stellar Perspective

    Judge, Philip G., 2007, ApJ

    38 citations

  20. Hemispheric differences in Polar Mesospheric Cloud morphology observed by the Student Nitric Oxide Explorer

    Bailey, Scott M., 2007, JASTP

    37 citations

How we found these papers

We searched NASA’s Astrophysics Data System (ADS) for peer-reviewed articles naming SNOE 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:"Student Nitric Oxide Explorer" OR ((abs:SNOE) AND abs:("nitric oxide" OR thermosphere OR mesosphere OR "soft X-ray" OR ionosphere OR auroral)))) AND property:refereed AND doctype:article AND pubdate:[1998-04 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 (1)

  1. Magnetospheric control of the energy input into the thermosphere Uses SNOE nitric oxide observations to map auroral energy input; the abstract omits the satellite's name. Decision 🤖

Removed after review (4)

  1. 2010AdSpR..45..638P Satellite drag study; does not name SNOE in its title or abstract. Decision 🤖
  2. 2024AdSpR..74.4809N Nitric oxide model built on TIMED/SABER data; does not name SNOE in its title or abstract. Decision 🤖
  3. 2000JASTP..62.1669B Sun-Earth coupling review; does not name SNOE in its title or abstract. Decision 🤖
  4. 2019PhRvB.100e4110A Materials physics paper; "SNOE" labels a crystal sample, not the SNOE satellite. Decision 🤖