Area of research
Global and Planetary Change · Atmospheric Science
Research interest
Research interests include Atmospheric and Environmental Gas Dynamics, Geology and Paleoclimatology Research, Climate variability and models, and Methane Hydrates and Related Phenomena.
Reviews and syntheses: The role of process-based modeling of the CO
<sub>2</sub>
: CH
<sub>4</sub>
production ratio in predicting future terrestrial Arctic methane emissions
High-resolution remote sensing and machine-learning-based upscaling of methane fluxes: a case study in the Western Canadian tundra
Permafrost as a tipping element in the Earth System: scales matter
A top-down evaluation of bottom-up estimates to reduce uncertainty in methane emissions from Arctic wetlands
Stochastic modelling of thermokarst lakes: size distributions and dynamic regimes
A new process-based methanogenesis routine in the JSBACH land surface model – a pan-Arctic view of the CO2:CH4 ratio
Attribution of observed pan-Arctic extreme fire events to anthropogenic forcings
Impacts of Shrub Coverage for modeled arctic Ecosystem Carbon Uptake and Storage
Supplementary material to "Impacts of Shrub Coverage for Arctic Ecosystem Carbon Uptake and Storage"
Compound effects of permafrost thaw, vegetation dynamics, and increasing CO2 alter carbon budget of the permafrost zone
Q-Arctic: synergetic observations and modeling of pan-Arctic interactions between hydrology, disturbance and carbon cycle processes
Enhanced Representation of Landscape Heterogeneities in ICON-LAND: Implications for Hydrology and Carbon Processes
Land carbon sinks in response to zero and negative emissions across Earth system models
Permafrost cloud feedback
Rapid vegetation changes of the late Quaternary
Informing Robust Functional Relationship Benchmarks: An Evaluation of the Temperature Sensitivity of Ecosystem Respiration Across the Arctic‐Boreal Region
Multivariate Climate Extremes and Their Impacts on Arctic Land–Atmosphere Carbon Exchange under Future Climate Change
Decomposition of the Zero Emissions Commitment into thermal warming pipeline and carbon buffering components
Land carbon response to positive, zero, and negative CO
<sub>2</sub>
emissions across Earth system models
Stochastic Modeling of Permafrost Ground Deformation Based on High-resolution InSAR Data
Stochastic Modelling of Thermokarst Lakes
Permafrost Experimental Protocol within the Tipping Point Modelling Intercomparison Project (TIPMIP)
Impacts of Shrub Coverage for Arctic Ecosystem Carbon Uptake and Storage
Supplementary material to "Decomposition of the Zero Emissions Commitment into thermal warming pipeline and carbon buffering components"
The Tipping Points Modelling Intercomparison Project (TIPMIP): Assessing tipping point risks in the Earth system
Consistency of global carbon budget between concentration- and emission-driven historical experiments simulated by CMIP6 Earth system models and suggestions for improved simulation of CO
<sub>2</sub>
concentration
flat10MIP: an emissions-driven experiment to diagnose the climate response to positive, zero and negative CO
<sub>2</sub>
emissions
Biogeochemical versus biogeophysical temperature effects of historical land-use change in CMIP6
The TIPMIP Earth system model experiment protocol: phase 1
The ICON-based Earth System Model for climate predictions and projections (ICON XPP v1.0)