Stephen P. Long

Active 1975–2025

122
Papers
47,911
Citations
92
h-index
121
i10-index

Citations

Citations per year for Stephen P. Long1981: 1 citations1982: 1 citations1983: 3 citations1984: 2 citations1985: 2 citations1986: 2 citations1987: 2 citations1988: 4 citations1989: 4 citations1990: 9 citations1991: 18 citations1992: 12 citations1993: 30 citations1994: 32 citations1995: 50 citations1996: 40 citations1997: 38 citations1998: 38 citations1999: 84 citations2000: 59 citations2001: 70 citations2002: 84 citations2003: 110 citations2004: 171 citations2005: 131 citations2006: 153 citations2007: 224 citations2008: 234 citations2009: 285 citations2010: 323 citations2011: 253 citations2012: 250 citations2013: 304 citations2014: 242 citations2015: 309 citations2016: 332 citations2017: 300 citations2018: 296 citations2019: 647 citations2020: 704 citations2021: 649 citations2022: 540 citations2023: 381 citations2024: 590 citations2025: 301 citations2026: 10 citations

Citation sources

Countries

World map of the countries and regions citing this authorUnited States: 1,845 citing papers, 22.3% of this breakdownChina: 911 citing papers, 11% of this breakdownUnited Kingdom: 758 citing papers, 9.1% of this breakdownGermany: 571 citing papers, 6.9% of this breakdownAustralia: 472 citing papers, 5.7% of this breakdownSpain: 242 citing papers, 2.9% of this breakdownItaly: 242 citing papers, 2.9% of this breakdownCanada: 239 citing papers, 2.9% of this breakdownFrance: 238 citing papers, 2.9% of this breakdownNetherlands: 235 citing papers, 2.8% of this breakdownJapan: 229 citing papers, 2.8% of this breakdownIndia: 190 citing papers, 2.3% of this breakdown
0%22.3%Other 25.5%

Fields

  • Biochemistry, Genetics and Molecular Biology32.8%
  • Agricultural and Biological Sciences31.3%
  • Environmental Science13.6%
  • Medicine8.6%
  • Engineering5.1%
  • Energy3.1%
  • Other5.5%

Topics

  • Photosynthetic Processes and Mechanisms12.8%
  • Plant responses to elevated CO27.6%
  • Plant Water Relations and Carbon Dynamics5.8%
  • Plant Stress Responses and Tolerance4.4%
  • Light effects on plants3.2%
  • Algal biology and biofuel production2.7%
  • Other63.5%

Coauthors

All papers

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  1. Improving photosynthesis and crop productivity by accelerating recovery from photoprotection

    Authors: , , , , , , - Science 2016 cited by 1,352

  2. Improving Photosynthetic Efficiency for Greater Yield

    Authors: , , - Annual Review of Plant Biology 2010 cited by 1,910

  3. Soybean photosynthesis and crop yield are improved by accelerating recovery from photoprotection

    Authors: , , , , , , , , , - Science 2022 cited by 348

  4. Redesigning photosynthesis to sustainably meet global food and bioenergy demand

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , - National Academy of Sciences, Proceedings of the National Academy of Sciences 2015 cited by 1,033

  5. Meeting the Global Food Demand of the Future by Engineering Crop Photosynthesis and Yield Potential

    Authors: , , - Cell 2015 cited by 1,064

  6. Into the Shadows and Back into Sunlight: Photosynthesis in Fluctuating Light

    Authors: , , , , , , , - Annual Review of Plant Biology 2022 cited by 230

  7. Can improvement in photosynthesis increase crop yields?

    Authors: , , , - Plant Cell & Environment 2006 cited by 1,584

  8. What is the maximum efficiency with which photosynthesis can convert solar energy into biomass?

    Authors: , , - Current Opinion in Biotechnology 2008 cited by 1,146

  9. Gas exchange measurements, what can they tell us about the underlying limitations to photosynthesis? Procedures and sources of error

    Authors: - Journal of Experimental Botany 2003 cited by 1,233

  10. The slow reversibility of photosystem II thermal energy dissipation on transfer from high to low light may cause large losses in carbon gain by crop canopies: a theoretical analysis

    Authors: , , , - Journal of Experimental Botany 2004 cited by 326

  11. What have we learned from 15 years of free‐air CO2 enrichment (FACE)? A meta‐analytic review of the responses of photosynthesis, canopy properties and plant production to rising CO2

    Authors: , - New Phytologist 2004 cited by 3,627

  12. Slow induction of photosynthesis on shade to sun transitions in wheat may cost at least 21% of productivity

    Authors: , - Philosophical Transactions of the Royal Society B Biological Sciences 2017 cited by 253

  13. Photoinhibition of Photosynthesis in Nature

    Authors: , , - Annual Review of Plant Physiology and Plant Molecular Biology 1994 cited by 1,569

  14. Improved temperature response functions for models of Rubisco‐limited photosynthesis

    Authors: , , , , - Plant Cell & Environment 2001 cited by 1,179

  15. Photosystem II Subunit S overexpression increases the efficiency of water use in a field-grown crop

    Authors: , , , , , , , , , - Nature Communications 2018 cited by 245

  16. Can the Cyanobacterial Carbon-Concentrating Mechanism Increase Photosynthesis in Crop Species? A Theoretical Analysis

    Authors: , - PLANT PHYSIOLOGY 2014 cited by 213

  17. RISING ATMOSPHERIC CARBON DIOXIDE: Plants FACE the Future

    Authors: , , , - Annual Review of Plant Biology 2004 cited by 1,712

  18. 30 years of free‐air carbon dioxide enrichment (FACE): What have we learned about future crop productivity and its potential for adaptation?

    Authors: , - Global Change Biology 2020 cited by 559

  19. Feedstocks for Lignocellulosic Biofuels

    Authors: , , , , - Science 2010 cited by 1,336

  20. Optimizing the Distribution of Resources between Enzymes of Carbon Metabolism Can Dramatically Increase Photosynthetic Rate: A Numerical Simulation Using an Evolutionary Algorithm

    Authors: , , - PLANT PHYSIOLOGY 2007 cited by 434

  21. Elevated CO2 effects on plant carbon, nitrogen, and water relations: six important lessons from FACE

    Authors: , , , , , - Journal of Experimental Botany 2009 cited by 1,653

  22. Food for Thought: Lower-Than-Expected Crop Yield Stimulation with Rising CO 2 Concentrations

    Authors: , , , , - Science 2006 cited by 1,514

  23. Temperature Response of Mesophyll Conductance. Implications for the Determination of Rubisco Enzyme Kinetics and for Limitations to Photosynthesis in Vivo

    Authors: , , , , - PLANT PHYSIOLOGY 2002 cited by 775

  24. Variation in photosynthetic induction between rice accessions and its potential for improving productivity

    Authors: , , , , , - New Phytologist 2020 cited by 152