
Giglio, L., Randerson, J. T. & van der Werf, G. R. J. Geophys. Res. Biogeosci. 118, 317–328 (2013).
University of Sydney News (8 January 2020); https://go.nature.com/3aBhTyu
Eggleton, M. National Geographic (15 November 2019); https://go.nature.com/38MEJSl
Rice, D. USA Today (8 January 2020); https://go.nature.com/36xAvfA
Mann, M. The Guardian (1 January 2020); https://go.nature.com/30WmreF
Law, T. Time (7 January 2020); https://go.nature.com/2RwgBxx
Abram, N. Scientific American Blog Network https://go.nature.com/3aNFI6o (2019).
Forkel, M. et al. Biogeosciences 16, 57–76 (2019).
Sippel, S., Meinshausen, N., Fischer, E. M., Székely, E. & Knutti, R. Nat. Clim. Change 10, 35–41 (2020).
Kirchmeier-Young, M. C., Zwiers, F. W., Gillett, N. P. & Cannon, A. J. Climatic Change 144, 365–379 (2017).
Van Wagner, C. E. & Canadian Forestry Service. Development and Structure of the Canadian Forest Fire Weather Index System. Forestry Technical Report 35 (Canadian Forestry Service, 1987).
Clarke, H. & Evans, J. P. Theor. Appl. Climatol. 136, 513–527 (2018).
Hoffmann, W. A. et al. Austr. Ecol. 37, 634–643 (2012).
Shuman, J. K. et al. Environ. Res. Lett. 12, 035003 (2017).
Thonicke, K. et al. Biogeosciences 7, 1991–2011 (2010).
Hantson, S. Biogeosciences 13, 3359–3375 (2016).
Hantson, S. et al. Geosci. Model Dev. https://doi.org/10.5194/gmd-2019-261 (2020).
Liu, Y., Goodrick, S. & Heilman, W. For. Ecol. Manag. 317, 80–96 (2014).
Arora, V. K. et al. Biogeosci. Discuss. https://doi.org/10.5194/bg-2019-473 (2019).
Norris, J., Chen, G. & Neelin, J. D. J. Clim. 32, 5397–5416 (2019).
Scheiter, S., Moncrieff, G. R., Pfeiffer, M. & Higgins, S. I. Biogeosci. Discuss. https://doi.org/10.5194/bg-2019-415 (2019).
Staver, A. C., Archibald, S. & Levin, S. A. Science 334, 230–232 (2011).
Forkel, M. et al. Environ. Res. Commun. 1, 051005 (2019).
Whitley, R. et al. Biogeosciences 14, 4711–4732 (2017).
Dahlin, K. M., Fisher, R. A. & Lawrence, P. J. Biogeosciences 12, 5061–5074 (2015).
Dahlin, K. M., Ponte, D. D., Setlock, E. & Nagelkirk, R. Ecography https://doi.org/10.1111/ecog.02443 (2017).
Williams, M., Law, B. E., Anthoni, P. M. & Unsworth, M. H. Tree Physiol. 21, 287–298 (2001).
Kauwe, M. G. D. et al. Biogeosciences 12, 7503–7518 (2015).
Whitley, R. et al. Biogeosciences 13, 3245–3265 (2016).
Teckentrup, L. et al. Biogeosciences 16, 3883–3910 (2019).
Rabin, S. S. et al. Geosci. Model Dev. 10, 1175–1197 (2017).
Neubauer, D. et al. HAMMOZ-Consortium MPI-ESM1.2-HAM model output prepared for CMIP6. https://doi.org/10.22033/ESGF/CMIP6.5016 (2019).
Seferian, R. CNRM-CERFACS CNRM-ESM2-1 model output prepared for CMIP6 CMIP. https://doi.org/10.22033/ESGF/CMIP6.1391 (2018).
EC-Earth Consortium (EC-Earth). EC-Earth-Consortium EC-Earth3-Veg model output prepared for CMIP6 ScenarioMIP. https://doi.org/10.22033/ESGF/CMIP6.727 (2019).
Danabasoglu, G. NCAR CESM2 model output prepared for CMIP6 ScenarioMIP. https://doi.org/10.22033/ESGF/CMIP6.7768 (2019).
Liu, Y. Y. et al. Nat. Clim. Change 5, 470–474 (2015).
Ge, Y., Avitabile, V., Heuvelink, G. B. M., Wang, J. & Herold, M. Int. J. Appl. Earth Obs. 31, 13–24 (2014).
Australian Government Bureau of Meteorology. Climate change — trends and extremes. http://www.bom.gov.au/climate/change (accessed 8 January 2020).
Source: Ecology - nature.com