CV
| Title | Published in | Access level | OA Policy | Year | Views | Downloads | |
|---|---|---|---|---|---|---|---|
| Comparison between plant fossil assemblages and simulated biomes across the Permian-Triassic Boundary | Frontiers in earth science | 2025 | 65 | 414 | |||
| Wildfire, ecosystem, and climate interactions in the Early Triassic | Communications earth & environment | 2025 | 9 | 6 | |||
| Comparing 545 Million Years of Sea-Level Change: New Insights from the TopoChronia QGIS Plugin | International archives of the photogrammetry, remote sensing and spatial information sciences | 2025 | 36 | 74 | |||
| Alternative climatic steady states near the Permian–Triassic Boundary | Scientific reports | 2024 | 96 | 49 | |||
| Evidence for variable provenance of Mercury anomalies during the Smithian–Spathian (Olenekian) | Global and planetary change | 2024 | 71 | 67 | |||
| Robustness of Competing Climatic States | Journal of climate | 2022 | 277 | 120 | |||
| 888–444 Ma Global Plate Tectonic Reconstruction With Emphasis on the Formation of Gondwana | Frontiers in earth science | 2021 | 232 | 135 | |||
| Upper Triassic calcareous algae from the Panthalassa Ocean | Rivista italiana di Paleontologia e Stratigrafia | 2020 | 441 | 352 | |||
| Co-existing climate attractors in a coupled aquaplanet | Climate Dynamics | 2019 | 483 | 627 | |||
| On plate tectonics and ocean temperatures | Geology | 2019 | 379 | 315 | |||
| How to reduce long-term drift in present-day and deep-time simulations? | Climate Dynamics | 2018 | 726 | 301 | |||
| Modeling the Middle Jurassic ocean circulation | Journal of Palaeogeography | 2015 | 585 | 305 |
