Publications of Graham S. Kerr


A list of publications authored or co-authored by Graham S. Kerr, derived from the SAO/NASA Astrophysics Data System (ADS). The number in brackets after each title indicates the number of citations that the paper has received.

Orcid ID: 0000-0001-5316-914X

List of publications ordered by citations
Number of papers: 39 (refereed: 39)
No. of citations: 1067
First author papers: 14 (refereed: 14)

2026

  1. Spatial variation of energy transport mechanisms within solar flare ribbons [1]
    Kerr, Graham S., Krucker, Säm, Allred, Joel C., Rodríguez-Gómez, Jenny M., Inglis, Andrew R., Ryan, Daniel F., Hayes, Laura A., Milligan, Ryan O., Kowalski, Adam F., Plowman, Joseph E., Young, Peter R., Kucera, Therese A. & Brosius, Jeffrey W., Nature Astronomy, 10, 202

2025

  1. Strong Photospheric Heating Indicated by Fe I 6173 Å Line Emission during White-light Solar Flares [2]
    Granovsky, Samuel, Kosovichev, Alexander G., Sadykov, Viacheslav M., Kerr, Graham S. & Allred, Joel C., ApJ, 988, 74
  2. Probing Progression of Heating Through the Lower Flare Atmosphere via High-cadence IRIS Spectroscopy [7]
    Lörinčík, Juraj, Polito, Vanessa, Kerr, Graham S., Hayes, Laura A. & Russell, Alexander J. B., ApJ, 986, 73
  3. Solar Orbiter's 2024 Major Flare Campaigns: An Overview [8]
    Ryan, Daniel F., Hayes, Laura A., Collier, Hannah, Kerr, Graham S., Inglis, Andrew R., Williams, David, Walsh, Andrew P., Janvier, Miho, Müller, Daniel, Berghmans, David, Verbeeck, Cis, Kraaikamp, Emil, Young, Peter R., Kucera, Therese A., Krucker, Säm, Stiefel, Muriel Z., Calchetti, Daniele, Reeves, Katharine K., Savage, Sabrina & Polito, Vanessa, Solar Physics, 300, 152
  4. Fe XVIII and Fe XX Forbidden Lines Observed by Solar Orbiter/SPICE [3]
    Young, Peter R., Inglis, Andrew R., Kerr, Graham S., Kucera, Therese A. & Ryan, Daniel F., ApJ, 986, 64

2024

  1. Spectral Imager of the Solar Atmosphere: The First Extreme-Ultraviolet Solar Integral Field Spectrograph Using Slicers [4]
    Calcines Rosario, Ariadna, Auchère, Frederic, Corso, Alain Jody, Del Zanna, Giulio, Dudík, Jaroslav, Gissot, Samuel, Hayes, Laura A., Kerr, Graham S., Kintziger, Christian, Matthews, Sarah A., Musset, Sophie, Orozco Suárez, David, Polito, Vanessa, Reid, Hamish A. S. & Ryan, Daniel F., Aerospace, 11, 208
  2. An optically thin view of the flaring chromosphere: non-thermal widths in a chromospheric condensation during an X-class solar flare [13]
    Kerr, Graham S., Kowalski, Adam F., Allred, Joel C., Daw, Adrian N. & Kane, Melissa R., MNRAS, 527, 2523
  3. Solar Flare Ribbon Fronts. II. Evolution of Heating Rates in Individual Flare Footpoints [13]
    Kerr, Graham S., Polito, Vanessa, Xu, Yan & Allred, Joel C., ApJ, 970, 21
  4. Can Proton Beam Heating Flare Models Explain Sunquakes? [17]
    Sadykov, Viacheslav M., Stefan, John T., Kosovichev, Alexander G., Stejko, Andrey M., Kowalski, Adam F., Allred, Joel C. & Kerr, Graham S., ApJ, 960, 80
  5. Precise timing of solar flare footpoint sources from mid-infrared observations [3]
    Simões, Paulo J. A., Fletcher, Lyndsay, Hudson, Hugh S., Kerr, Graham S., Penn, Matt & Lopez, Karla F., MNRAS, 532, 705

2023

  1. Interrogating Solar Flare Loop Models with IRIS Observations 2: Plasma Properties, Energy Transport, and Future Directions [24]
    Kerr, Graham S., Frontiers in Astronomy and Space Sciences, 9, 1060862
  2. Prospects of Detecting Nonthermal Protons in Solar Flares via Lyman Line Spectroscopy: Revisiting the Orrall-Zirker Effect [17]
    Kerr, Graham S., Allred, Joel C., Kowalski, Adam F., Milligan, Ryan O., Hudson, Hugh S., Zambrana Prado, Natalia, Kucera, Therese A. & Brosius, Jeffrey W., ApJ, 945, 118
  3. Formation of the Lyman Continuum during Solar Flares [6]
    McLaughlin, Shaun A., Milligan, Ryan O., Kerr, Graham S., Monson, Aaron J., Simões, Paulo J. A. & Mathioudakis, Mihalis, ApJ, 944, 186
  4. Solar Flare Ribbon Fronts. I. Constraining Flare Energy Deposition with IRIS Spectroscopy [27]
    Polito, Vanessa, Kerr, Graham S., Xu, Yan, Sadykov, Viacheslav M. & Lorincik, Juraj, ApJ, 944, 104
  5. The Solar Particle Acceleration Radiation and Kinetics (SPARK) Mission Concept [6]
    Reid, Hamish A. S., Musset, Sophie, Ryan, Daniel F., Andretta, Vincenzo, Auchère, Frédéric, Baker, Deborah, Benvenuto, Federico, Browning, Philippa, Buchlin, Éric, Calcines Rosario, Ariadna, Christe, Steven D., Corso, Alain Jody, Dahlin, Joel, Dalla, Silvia, Del Zanna, Giulio, Denker, Carsten, Dudík, Jaroslav, Erdélyi, Robertus, Ermolli, Ilaria, Fletcher, Lyndsay, Fludra, Andrzej, Green, Lucie M., Gordovskyy, Mykola, Guglielmino, Salvo L., Hannah, Iain, Harrison, Richard, Hayes, Laura A., Inglis, Andrew R., Jeffrey, Natasha L. S., Kašparová, Jana, Kerr, Graham S., Kintziger, Christian, Kontar, Eduard P., Krucker, Säm, Laitinen, Timo, Laurent, Philippe, Limousin, Olivier, Long, David M., Maloney, Shane A., Massa, Paolo, Massone, Anna Maria, Matthews, Sarah, Mrozek, Tomasz, Nakariakov, Valery M., Parenti, Susanna, Piana, Michele, Polito, Vanessa, Pesce-Rollins, Melissa, Romano, Paolo, Rouillard, Alexis P., Sasso, Clementina, Shih, Albert Y., Stęślicki, Marek, Orozco Suárez, David, Teriaca, Luca, Verma, Meetu, Veronig, Astrid M., Vilmer, Nicole, Vocks, Christian & Warmuth, Alexander, Aerospace, 10, 1034
  6. Extreme Red-wing Enhancements of UV Lines during the 2022 March 30 X1.3 Solar Flare [8]
    Xu, Yan, Kerr, Graham S., Polito, Vanessa, Huang, Nengyi, Jing, Ju & Wang, Haimin, ApJ, 958, 67
  7. A Possible Mechanism for the "Late Phase" in Stellar White-light Flares [17]
    Yang, Kai E., Sun, Xudong, Kerr, Graham S. & Hudson, Hugh S., ApJ, 959, 54

2022

  1. Solar Flare Heating with Turbulent Suppression of Thermal Conduction [27]
    Allred, Joel C., Kerr, Graham S. & Gordon Emslie, A., ApJ, 931, 60
  2. Probing the Physics of the Solar Atmosphere with the Multi-slit Solar Explorer (MUSE). II. Flares and Eruptions [54]
    Cheung, Mark C. M., Martínez-Sykora, Juan, Testa, Paola, De Pontieu, Bart, Chintzoglou, Georgios, Rempel, Matthias, Polito, Vanessa, Kerr, Graham S., Reeves, Katharine K., Fletcher, Lyndsay, Jin, Meng, Nóbrega-Siverio, Daniel, Danilovic, Sanja, Antolin, Patrick, Allred, Joel, Hansteen, Viggo, Ugarte-Urra, Ignacio, DeLuca, Edward, Longcope, Dana, Takasao, Shinsuke, DeRosa, Marc L., Boerner, Paul, Jaeggli, Sarah, Nitta, Nariaki V., Daw, Adrian, Carlsson, Mats, Golub, Leon & The, ApJ, 926, 53
  3. Interrogating Solar Flare Loop Models with IRIS Observations 1: Overview of the Models, and Mass flows [27]
    Kerr, Graham S., Frontiers in Astronomy and Space Sciences, 9, 1060856
  4. The Atmospheric Response to High Nonthermal Electron-beam Fluxes in Solar Flares. II. Hydrogen-broadening Predictions for Solar Flare Observations with the Daniel K. Inouye Solar Telescope [35]
    Kowalski, Adam F., Allred, Joel C., Carlsson, Mats, Kerr, Graham S., Tremblay, Pier-Emmanuel, Namekata, Kosuke, Kuridze, David & Uitenbroek, Han, ApJ, 928, 190
  5. Multi-passband Observations of a Solar Flare over the He I 10830 Å line [7]
    Xu, Yan, Yang, Xu, Kerr, Graham S., Polito, Vanessa, Sadykov, Viacheslav M., Jing, Ju, Cao, Wenda & Wang, Haimin, ApJ, 924, L18
  6. Radiative losses in the chromosphere during a C-class flare [9]
    Yadav, R., de la Cruz Rodríguez, J., Kerr, G. S., Díaz Baso, C. J. & Leenaarts, J., A&A, 665, A50

2021

  1. He I 10830 Å Dimming during Solar Flares. I. The Crucial Role of Nonthermal Collisional Ionizations [34]
    Kerr, Graham S., Xu, Yan, Allred, Joel C., Polito, Vanessa, Sadykov, Viacheslav M., Huang, Nengyi & Wang, Haimin, ApJ, 912, 153

2020

  1. Modeling the Transport of Nonthermal Particles in Flares Using Fokker-Planck Kinetic Theory [46]
    Allred, Joel C., Alaoui, Meriem, Kowalski, Adam F. & Kerr, Graham S., ApJ, 902, 16
  2. Solar Flare Arcade Modeling: Bridging the Gap from 1D to 3D Simulations of Optically Thin Radiation [30]
    Kerr, Graham S., Allred, Joel C. & Polito, Vanessa, ApJ, 900, 18
  3. Response of SDO/HMI Observables to Heating of the Solar Atmosphere by Precipitating High-energy Electrons [15]
    Sadykov, Viacheslav M., Kosovichev, Alexander G., Kitiashvili, Irina N. & Kerr, Graham S., ApJ, 893, 24

2019

  1. Modeling Mg II during Solar Flares. II. Nonequilibrium Effects [24]
    Kerr, Graham S., Carlsson, Mats & Allred, Joel C., ApJ, 885, 119
  2. Modeling Mg II During Solar Flares. I. Partial Frequency Redistribution, Opacity, and Coronal Irradiation [30]
    Kerr, Graham S., Allred, Joel C. & Carlsson, Mats, ApJ, 883, 57
  3. SI IV Resonance Line Emission during Solar Flares: Non-LTE, Nonequilibrium, Radiation Transfer Simulations [66]
    Kerr, Graham S., Carlsson, Mats, Allred, Joel C., Young, Peter R. & Daw, Adrian N., ApJ, 871, 23
  4. Spectral Evidence for Heating at Large Column Mass in Umbral Solar Flare Kernels. I. IRIS Near-UV Spectra of the X1 Solar Flare of 2014 October 25 [32]
    Kowalski, Adam F., Butler, Elizabeth, Daw, Adrian N., Fletcher, Lyndsay, Allred, Joel C., De Pontieu, Bart, Kerr, Graham S. & Cauzzi, Gianna, ApJ, 878, 135
  5. Statistical Study of Chromospheric Evaporation in Impulsive Phase of Solar Flares [16]
    Sadykov, Viacheslav M., Kosovichev, Alexander G., Sharykin, Ivan N. & Kerr, Graham S., ApJ, 871, 2

2018

  1. Modeling of the Hydrogen Lyman Lines in Solar Flares [27]
    Brown, Stephen A., Fletcher, Lyndsay, Kerr, Graham S., Labrosse, Nicolas, Kowalski, Adam F. & De La Cruz Rodríguez, Jaime, ApJ, 862, 59

2017

  1. Formation of the thermal infrared continuum in solar flares [44]
    Simões, Paulo J. A., Kerr, Graham S., Fletcher, Lyndsay, Hudson, Hugh S., Giménez de Castro, C. Guillermo & Penn, Matt, A&A, 605, A125

2016

  1. Simulations of the Mg II k and Ca II 8542 lines from an Alfvén Wave-heated Flare Chromosphere [105]
    Kerr, Graham S., Fletcher, Lyndsay., Russell, Alexander J. B. & Allred, Joel C., ApJ, 827, 101

2015

  1. IRIS observations of the Mg ii h and k lines during a solar flare [66]
    Kerr, G. S., Simões, P. J. A., Qiu, J. & Fletcher, L., A&A, 582, A50

2014

  1. Physical Properties of White-light Sources in the 2011 February 15 Solar Flare [60]
    Kerr, G. S. & Fletcher, L., ApJ, 783, 98
  2. The Radiated Energy Budget of Chromospheric Plasma in a Major Solar Flare Deduced from Multi-wavelength Observations [105]
    Milligan, Ryan O., Kerr, Graham S., Dennis, Brian R., Hudson, Hugh S., Fletcher, Lyndsay, Allred, Joel C., Chamberlin, Phillip C., Ireland, Jack, Mathioudakis, Mihalis & Keenan, Francis P., ApJ, 793, 70

2012

  1. Hard X-Ray and Ultraviolet Observations of the 2005 January 15 Two-ribbon Flare [32]
    Cheng, J. X., Kerr, G. & Qiu, J., ApJ, 744, 48


Created on Wed Apr 22 04:36:29 2026.