Bibliography
“Fire Disturbance Belowground: Untangling Consequences For Soil Food Webs And Organic Matter”. Natural Resource Ecology Laboratory. Natural Resource Ecology Laboratory. Colorado State University, 2019.
. “Global Change Effects On Plant Communities Are Magnified By Time And The Number Of Global Change Factors Imposed”. Proceedings Of The National Academy Of Sciences 116, no. 36. Proceedings Of The National Academy Of Sciences (2019): 17867 - 17873. doi:10.1073/pnas.1819027116.
. “The Importance Of Secondary Growth To Plant Responses To Snow In The Arctic”. Functional Ecology 33. Functional Ecology (2019): 1050–1066. doi:10.1111/1365-2435.13323.
. “Improving Lake Mixing Process Simulations In The Community Land Model By Using K Profile Parameterization”. Hydrology And Earth System Sciences 23, no. 12. Hydrology And Earth System Sciences (2019): 4969 - 4982. doi:10.5194/hess-23-4969-2019.
. “Improving Lake Mixing Process Simulations In The Community Land Model By Using K Profile Parameterization”. Hydrology And Earth System Sciences 23. Hydrology And Earth System Sciences (2019): 4969–4982. doi:10.5194/hess-23-4969-2019.
. “Large Loss Of Co2 In Winter Observed Across The Northern Permafrost Region”. Nature Climate Change 9. Nature Climate Change (2019): 852–857. doi:10.1038/s41558-019-0592-8.
. “Linx I And Ii: Lessons Learned And Emerging Questions”. Frontiers In Environmental Science 7. Frontiers In Environmental Science (2019): 181. doi:10.3389/fenvs.2019.00181.
. “Long-Term Warming In Alaska Enlarges The Diazotrophic Community In Deep Soils”. Mbio 10. Mbio (2019): e02521–18. doi:10.1128/mBio.02521-18.
. “Long-Term Warming Research In High-Latitude Ecosystems: Responses From Polar Ecosystems And Implications For Future Climate”. In Ecosystem Consequences Of Soil Warming. 1st ed. Ecosystem Consequences Of Soil Warming. Academic Press, 2019.
. “Microsite Conditions In Retrogressive Thaw Slumps May Facilitate Increased Seedling Recruitment In The Alaskan Low Arctic”. Ecology And Evolution 9. Ecology And Evolution (2019): 1880–1897. doi:10.1002/ece3.4882.
. “Ozone Depletion, Ultraviolet Radiation, Climate Change And Prospects For A Sustainable Future”. Nature Sustainability 2. Nature Sustainability (2019): 569–579. doi:10.1038/s41893-019-0314-2.
. “Phylogenetic Diversity In Freshwater‐Dwelling Isochrysidales Haptophytes With Implications For Alkenone Production”. Geobiology. Geobiology (2019). doi:10.1111/gbi.12330.
. “Quantifying Reach-Average Effects Of Hyporheic Exchange On Arctic River Temperatures In An Area Of Continuous Permafrost”. Water Resources Research 55. Water Resources Research (2019). doi:10.1029/2018WR023463.
. “Quantifying Reach‐Average Effects Of Hyporheic Exchange On Arctic River Temperatures In An Area Of Continuous Permafrost”. Water Resources Research 55. Water Resources Research (2019): 1951–1971. doi:10.1029/2018wr023463.
. “Recruitment Dynamics And Population Structure Of Willows In Tundra Disturbed By Retrogressive Thaw Slump Thermokarst On Alaska’s North Slope”. Perspectives In Plant Ecology, Evolution And Systematics 41. Perspectives In Plant Ecology, Evolution And Systematics (2019): 125494. doi:10.1016/j.ppees.2019.125494.
. “Revealing Biogeochemical Signatures Of Arctic Landscapes With River Chemistry”. Scientific Reports 9, no. 1. Scientific Reports (2019). doi:10.1038/s41598-019-49296-6.
. “Seasonal Changes In Light Availability Modify The Temperature Dependence Of Secondary Production In An Arctic Stream”. Ecology. Ecology (2019): e02690. doi:10.1002/ecy.2690.
. “Solar Uv Radiation In A Changing World: Roles Of Cryosphere–Land–Water–Atmosphere Interfaces In Global Biogeochemical Cycles”. Photochemical & Photobiological Sciences 18. Photochemical & Photobiological Sciences (2019): 747–774. doi:10.1039/c8pp90063a.
. “Solar-Induced Chlorophyll Fluorescence Exhibits A Universal Relationship With Gross Primary Productivity Across A Wide Variety Of Biomes”. Global Change Biology 25, no. 4. Global Change Biology (2019): e4 - e6. doi:10.1111/gcb.14565.
. “Solar‐Induced Chlorophyll Fluorescence Exhibits A Universal Relationship With Gross Primary Productivity Across A Wide Variety Of Biomes”. Global Change Biology 25. Global Change Biology (2019). doi:10.1111/gcb.14565.
. “Above- And Belowground Responses To Long-Term Herbivore Exclusion”. Arctic, Antarctic, And Alpine Research 52. Arctic, Antarctic, And Alpine Research (2020): 109-119. doi:10.1080/15230430.2020.1733891.
. “Active Layer Freeze-Thaw And Water Storage Dynamics In Permafrost Environments Inferred From Insar”. Remote Sensing Of Environment 248. Remote Sensing Of Environment (2020): 112007. doi:10.1016/j.rse.2020.112007.
. “An Approach To Modeling Resource Optimization For Substitutable And Interdependent Resources”. Ecological Modelling 425. Ecological Modelling (2020): 109033. doi:10.1016/j.ecolmodel.2020.109033.
. “Arctic Amplification Of Global Warming Strengthened By Sunlight Oxidation Of Permafrost Carbon To Co 2”. Geophysical Research Letters 47, no. 12. Geophysical Research Letters (2020). doi:10.1029/2020GL087085.
. “Arctic Amplification Of Global Warming Strengthened By Sunlight Oxidation Of Permafrost Carbon To Co $_\Textrm2$”. Geophysical Research Letters 47. Geophysical Research Letters (2020). doi:10.1029/2020GL087085.
.