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Silvia Caldararu
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The three major axes of terrestrial ecosystem function
M Migliavacca, T Musavi, MD Mahecha, JA Nelson, J Knauer, ...
Nature 598 (7881), 468-472, 2021
1252021
Towards a more physiological representation of vegetation phosphorus processes in land surface models
M Jiang, S Caldararu, S Zaehle, DS Ellsworth, BE Medlyn
New Phytologist 222 (3), 1223-1229, 2019
672019
Phenology as a strategy for carbon optimality: a global model
S Caldararu, DW Purves, PI Palmer
Biogeosciences 11 (3), 763-778, 2014
642014
Low phosphorus supply constrains plant responses to elevated CO2: a meta‐analysis
M Jiang, S Caldararu, H Zhang, K Fleischer, KY Crous, J Yang, ...
Global Change Biology, 2020
532020
A new model of the coupled carbon, nitrogen, and phosphorus cycles in the terrestrial biosphere (QUINCY v1. 0; revision 1996)
T Thum, S Caldararu, J Engel, M Kern, M Pallandt, R Schnur, L Yu, ...
Geoscientific Model Development 12 (11), 4781-4802, 2019
52*2019
Inferring Amazon leaf demography from satellite observations of leaf area index
S Caldararu, PI Palmer, DW Purves
Biogeosciences 9 (4), 1389-1404, 2012
462012
Whole‐plant optimality predicts changes in leaf nitrogen under variable CO2 and nutrient availability
S Caldararu, T Thum, L Yu, S Zaehle
New Phytologist 225 (6), 2331-2346, 2020
372020
Mismatch of N release from the permafrost and vegetative uptake opens pathways of increasing nitrous oxide emissions in the high Arctic
F Lacroix, S Zaehle, S Caldararu, J Schaller, P Stimmler, D Holl, ...
Global Change Biology, 2022
142022
Long‐term ecosystem nitrogen limitation from foliar δ15N data and a land surface model
S Caldararu, T Thum, L Yu, M Kern, R Nair, S Zaehle
Global Change Biology 28 (2), 493-508, 2022
102022
Predicting resilience through the lens of competing adjustments to vegetation function
MEB Sabot, MG De Kauwe, AJ Pitman, DS Ellsworth, BE Medlyn, ...
Plant, Cell & Environment 45 (9), 2744-2761, 2022
82022
The impacts of data constraints on the predictive performance of a general process-based crop model (PeakN-crop v1. 0)
S Caldararu, DW Purves, MJ Smith
Geoscientific Model Development 10 (4), 1679, 2017
72017
Ideas and perspectives: Beyond model evaluation–combining experiments and models to advance terrestrial ecosystem science
S Caldararu, V Rolo, BD Stocker, TE Gimeno, R Nair
Biogeosciences Discussions, 1-22, 2023
62023
The effect of using the plant functional type paradigm on a data-constrained global phenology model
S Caldararu, DW Purves, MJ Smith
Biogeosciences 13 (4), 925-941, 2016
62016
The quasi-equilibrium framework revisited: analyzing long-term CO2 enrichment responses in plant–soil models
M Jiang, S Zaehle, MGD Kauwe, AP Walker, S Caldararu, DS Ellsworth, ...
Geoscientific Model Development 12 (5), 2069-2089, 2019
52019
Why are Arctic shrubs becoming more nitrogen limited?
LE Street, S Caldararu
New Phytologist, 2021
32021
Improved representation of phosphorus exchange on<? xmltex\break?> soil mineral surfaces reduces estimates of phosphorus<? xmltex\break?> limitation in temperate forest ecosystems
L Yu, S Caldararu, B Ahrens, T Wutzler, M Schrumpf, J Helfenstein, ...
Biogeosciences 20 (1), 57-73, 2023
2*2023
Modelled forest ecosystem carbon–nitrogen dynamics with integrated mycorrhizal processes under elevated CO
MA Thurner, S Caldararu, J Engel, A Rammig, S Zaehle
Biogeosciences 21 (6), 1391-1410, 2024
12024
On the predictability of turbulent fluxes from land: PLUMBER2 MIP experimental description and preliminary results
G Abramowitz, A Ukkola, S Hobeichi, JC Page, M Lipson, MGD Kauwe, ...
12024
Higher global gross primary productivity under future climate with more advanced representations of photosynthesis
J Knauer, M Cuntz, B Smith, JG Canadell, BE Medlyn, AC Bennett, ...
Science Advances 9 (46), eadh9444, 2023
12023
Changes in leaf nitrogen and phosphorus content from observations and a land surface model: evidence for increasing nutrient imbalance in Europe
S Caldararu, K Fleischer, L Yu, S Zaehle
EGU General Assembly Conference Abstracts, EGU21-2912, 2021
12021
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