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2023
Parisien M-A, Barber QE, Bourbonnais ML, et al. Abrupt, climate-induced increase in wildfires in British Columbia since the mid-2000s. Nature. 2023;4(309). Available at: https://www.nature.com/articles/s43247-023-00977-1.PDF icon s43247-023-00977-1.pdf (5.58 MB)
Porter TM, Smenderovac E, Morris D, Venier L. All boreal forest successional stages needed to maintain the full suite of soil biodiversity, community composition, and function following wildfire. Scientific Report. 2023;13.PDF icon s41598-023-30732-7.pdf (5.42 MB)
Henne PD, Hawbaker TJ. An aridity threshold model of fire sizes and annual area burned in extensively forested ecoregions of the western USA. Ecological Modelling. 2023;477.PDF icon An aridity threshold model of fire sizes and annual area burned in extensively forested ecoregions of the western USA .pdf (904.84 KB)
Lucash MS, Marshall AM, Weiss SA, et al. Burning trees in frozen soil: Simulating fire, vegetation, soil, and hydrology in the boreal forests of Alaska. Ecological Modelling. 2023;481.
Hawbaker TJ, Henne PD, Vanderhoof MK, et al. Changes in wildfire occurrence and risk to homes from 1990 through 2019 in the Southern Rocky Mountains, USA. Ecosphere. 2023;14(2).PDF icon Ecosphere - 2023 - Hawbaker - Changes in wildfire occurrence and risk to homes from 1990 through 2019 in the Southern Rocky.pdf (4.62 MB)
Stephens SL, Steel ZL, Collins BM, et al. Climate and fire impacts on tree recruitment in mixed conifer forests in Northwestern Mexico and California. Ecological Applications. 2023. Available at: https://esajournals.onlinelibrary.wiley.com/doi/epdf/10.1002/eap.2844.PDF icon Ecological Applications - 2023 - Stephens - Climate and fire impacts on tree recruitment in mixed conifer forests in.pdf (3.74 MB)
Abatzoglou JT, Kolden CA, Williams AP, et al. Downslope Wind-Driven Fires in the Western United States. Earth's Future. 2023;11(5).PDF icon Downslope Wind-Driven Fires in the Western United States.pdf (8.46 MB)
MacDonald G, Wall T, Enquist CAF, et al. Drivers of California’s changing wildfires: a state-of-the-knowledge synthesis. International Journal of Wildland Fire. 2023.PDF icon Drivers of California’s changing wildfires- a state-of-the-knowledge synthesis.pdf (3.08 MB)
Marsh C, Blankinship JC, Hurteau MD. Effects of nurse shrubs and biochar on planted conifer seedling survival and growth in a high-severity burn patch in New Mexico, USA. Forest Ecology and Management. 2023;537.
Johnson BR, Ager AA, Evers CR, et al. Exploring and Testing Wildfire Risk Decision-Making in the Face of Deep Uncertainty. Fire. 2023;6(7).PDF icon fire-06-00276-v3.pdf (6.02 MB)
Zhang Z, Zhang L, Xu H, et al. Forest water-use efficiency: Effects of climate change and management on the coupling of carbon and water processes. Forest Ecology and Management. 2023;534.PDF icon Forest water-use efficiency: Effects of climate change and management on the coupling of carbon and water processes.pdf (1 MB)
McGinnis S, Kessenich L, Mearns L, et al. Future regional increases in simultaneous large Western USA wildfires. International Journal of Wildland Fire. 2023.PDF icon McGinnis et al_2023_Future regional increases in simulatneous large western USA fires.pdf (944.95 KB)
Hill AP, Nolan CJ, Hemes KS, Cambron TW, Field CB. Low-elevation conifers in California’s Sierra Nevada are out of equilibrium with climate. PNAS Nexus. 2023;2(2).PDF icon Hill et al_2023_Low elevation conifers in CA Sierra Nevada are out of equilibrium with climate.pdf (719.85 KB)
Woinarski JCZ, McCormack PC, McDonald J, et al. Making choices: prioritising the protection of biodiversity in wildfires. International Journal of Wildland Fire. 2023.PDF icon Making choices- prioritising the protection of biodiversity in wildfires.pdf (983.35 KB)
Baig J, Gavin DG. Postglacial vegetation and fire history with a high-resolution analysis of tephra impacts, High Cascade Range, Oregon, USA. Quaternary Science Reviews. 2023;303. Available at: https://www.sciencedirect.com/science/article/abs/pii/S0277379123000185?via%3Dihub.
Davis KT, Robles MD, Kemp KB, et al. Reduced fire severity offers near-term buffer to climate-driven declines in conifer resilience across the western United States. PNAS. 2023;120(11).PDF icon pnas.2208120120.pdf (5.12 MB)
Rodman KC, Davis KT, Parks SA, et al. Refuge-yeah or refuge-nah? Predicting locations of forest resistance and recruitment in a fiery world. Global Change Biology. 2023.
Pau M, Gauthier S, Boulanger Y, et al. Response of forest productivity to changes in growth and fire regime due to climate change. Canadian Journal of Forest Research. 2023.PDF icon Response of forest productivity to changes in growth and fire regime due to climate change.pdf (3.98 MB)
Huang X, Ding K, Liu J, et al. Smoke-weather interaction affects extreme wildfires in diverse coastal regions. Science. 2023;379(6631). Available at: https://www.science.org/doi/epdf/10.1126/science.add9843.PDF icon Smoke-weather interaction affects extreme wildfires in diverse coastal regions .pdf (3.59 MB)
Harvey BJ, Buonanduci MS, Turner MG. Spatial interactions among short-interval fires reshape forest landscapes. Global Ecology and Biogeography. 2023;32(4).
Hoecker TJ, Parks SA, Krosby M, Dobrowski SZ. Widespread exposure to altered fire regimes under 2 °C warming is projected to transform conifer forests of the Western United States. Nature. 2023;4(295).PDF icon s43247-023-00954-8.pdf (5.38 MB)

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