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Greg A Barron‐gafford

Biographic Data

ID4425459
NAMEGreg A Barron‐gafford
GIVEN NAMESGreg A
FAMILY NAMEBarron‐gafford
SIGNATUREGAFFORD G A B
AFFILIATIONSUniversity of Arizona
ORCID0000-0003-1333-3843
VERIFIEDYes
TOTAL WORKS6
TOTAL CITATIONS15
AUTHOR COUNT6
EDITOR COUNT0
FIRST PUBLICATION YEAR2017
LATEST PUBLICATION YEAR2025
H-INDEX2
  • Cultivating engagement: Public participation in agrivoltaics planning and design

    Open Access•Carrie Seay-Fleming, Tyler Swanson et al.•ARTICLE•Energy Research & Social Science•2025•References: 9

  • Enough is enough, we like our farms: The role of landscape ideology in shaping perceptions of solar energy and agrivoltaics in the rural American Southwest

    Open Access•Tyler Swanson, Carrie Seay-Fleming et al.•ARTICLE•Journal of Rural Studies•2025•Cited by: 4•References: 47

  • Beyond native plants: Aligning greening programs with disadvantaged communities’ landscape needs for more equitable green infrastructure planning

    Open Access•Adriana Zuniga-Teran, Kenneth J Kokroko et al.•ARTICLE•Geoforum•2025•References: 11

  • Agrivoltaic system design tools for managing trade-offs between energy production, crop productivity and water consumption

    Open Access•Emily C Warmann, G Darrel Jenerette et al.•ARTICLE•Environmental Research Letters•2024

    Agrivoltaic systems that locate crop production and photovoltaic energy generation on the same land have the potential to aid the transition to renewable energy by reducing the competition between food, habitat, and energy needs for land while reducing irrigation requirements. Experimental efforts to date have not adequately developed an understanding of the interaction among local climate, array design and crop selection sufficient to manage tra…

  • Agrivoltaics provide mutual benefits across the food–energy–water nexus in drylands

    Open Access•Greg A Barron‐gafford, Mitchell Pavao‐zuckerman et al.•ARTICLE•Nature Sustainability•2019•Cited by: 11•References: 8

  • Temperature response surfaces for mortality risk of tree species with future drought

    Open Access•Henry D Adams, Greg A Barron‐gafford et al.•ARTICLE•Environmental Research Letters•2017

    Widespread, high levels of tree mortality, termed forest die-off, associated with drought and rising temperatures, are disrupting forests worldwide. Drought will likely become more frequent with climate change, but even without more frequent drought, higher temperatures can exacerbate tree water stress. The temperature sensitivity of drought-induced mortality of tree species has been evaluated experimentally for only single-step changes in temper…

  • Agrivoltaics provide mutual benefits across the food–energy–water nexus in drylands

    Open Access•Greg A Barron‐gafford, Mitchell Pavao‐zuckerman et al.•ARTICLE•Nature Sustainability•2019•Cited by: 11•References: 8

  • Enough is enough, we like our farms: The role of landscape ideology in shaping perceptions of solar energy and agrivoltaics in the rural American Southwest

    Open Access•Tyler Swanson, Carrie Seay-Fleming et al.•ARTICLE•Journal of Rural Studies•2025•Cited by: 4•References: 47

  • Temperature response surfaces for mortality risk of tree species with future drought

    Open Access•Henry D Adams, Greg A Barron‐gafford et al.•ARTICLE•Environmental Research Letters•2017

    Widespread, high levels of tree mortality, termed forest die-off, associated with drought and rising temperatures, are disrupting forests worldwide. Drought will likely become more frequent with climate change, but even without more frequent drought, higher temperatures can exacerbate tree water stress. The temperature sensitivity of drought-induced mortality of tree species has been evaluated experimentally for only single-step changes in temper…

  • Agrivoltaics provide mutual benefits across the food–energy–water nexus in drylands

    Open Access•Greg A Barron‐gafford, Mitchell Pavao‐zuckerman et al.•ARTICLE•Nature Sustainability•2019•Cited by: 11•References: 8

  • Agrivoltaic system design tools for managing trade-offs between energy production, crop productivity and water consumption

    Open Access•Emily C Warmann, G Darrel Jenerette et al.•ARTICLE•Environmental Research Letters•2024

    Agrivoltaic systems that locate crop production and photovoltaic energy generation on the same land have the potential to aid the transition to renewable energy by reducing the competition between food, habitat, and energy needs for land while reducing irrigation requirements. Experimental efforts to date have not adequately developed an understanding of the interaction among local climate, array design and crop selection sufficient to manage tra…

  • Cultivating engagement: Public participation in agrivoltaics planning and design

    Open Access•Carrie Seay-Fleming, Tyler Swanson et al.•ARTICLE•Energy Research & Social Science•2025•References: 9

  • Enough is enough, we like our farms: The role of landscape ideology in shaping perceptions of solar energy and agrivoltaics in the rural American Southwest

    Open Access•Tyler Swanson, Carrie Seay-Fleming et al.•ARTICLE•Journal of Rural Studies•2025•Cited by: 4•References: 47

  • Beyond native plants: Aligning greening programs with disadvantaged communities’ landscape needs for more equitable green infrastructure planning

    Open Access•Adriana Zuniga-Teran, Kenneth J Kokroko et al.•ARTICLE•Geoforum•2025•References: 11

Environmental Science (4 works) · Photovoltaic Systems and Sustainability (4 works) · Ecology (3 works) · Economics (3 works) · Energy and Environment Impacts (3 works) · Environmental planning (3 works) · Biology (2 works) · Business (2 works) · Engineering (2 works) · Geography (2 works)

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