Tropical forests modify the conditions they depend on through feedbacks at different spatial scales. These feedbacks shape the hysteresis (history-dependence) of tropical forests, thus controlling their resilience to deforestation and response to climate change. Here, we determine the emergent hysteresis from local-scale tipping points and regional-scale forest-rainfall feedbacks across the tropics under the recent climate and a severe climate-change scenario. By integrating remote sensing, a global hydrological model, and detailed atmospheric moisture tracking simulations, we find that forest-rainfall feedback expands the geographic range of possible forest distributions, especially in the Amazon. The Amazon forest could partially recover ...
With ongoing global warming, the amount and frequency of precipitation in the tropics is projected t...
Deforestation and drought are among the greatest environmental pressures on the Amazon rainforest, p...
Extended exposure to change in rainfall patterns and permanent land-use change (LUC) have reduced th...
Tropical forests modify the conditions they depend on through feedbacks at different spatial scales....
Tropical rainforests in the Amazon and Congo River basins and their climate are mutually dependent. ...
Tipping elements are nonlinear subsystems of the Earth system that have the potential to abruptly sh...
This thesis explores the hypothesis that tropical forest and savanna can be alternative stable state...
It has recently been found that the frequency distribution of remotely sensed tree cover in the trop...
Tropical rainforests are recognized as one of the terrestrial tipping elements which could have pro...
Amazon forests, which store ∼50% of tropical forest carbon and play a vital role in global water, en...
The future of tropical forests has become one of the iconic issues in climate-change science. A numb...
With ongoing global warming, the amount and frequency of precipitation in the tropics is projected t...
Deforestation and drought are among the greatest environmental pressures on the Amazon rainforest, p...
Extended exposure to change in rainfall patterns and permanent land-use change (LUC) have reduced th...
Tropical forests modify the conditions they depend on through feedbacks at different spatial scales....
Tropical rainforests in the Amazon and Congo River basins and their climate are mutually dependent. ...
Tipping elements are nonlinear subsystems of the Earth system that have the potential to abruptly sh...
This thesis explores the hypothesis that tropical forest and savanna can be alternative stable state...
It has recently been found that the frequency distribution of remotely sensed tree cover in the trop...
Tropical rainforests are recognized as one of the terrestrial tipping elements which could have pro...
Amazon forests, which store ∼50% of tropical forest carbon and play a vital role in global water, en...
The future of tropical forests has become one of the iconic issues in climate-change science. A numb...
With ongoing global warming, the amount and frequency of precipitation in the tropics is projected t...
Deforestation and drought are among the greatest environmental pressures on the Amazon rainforest, p...
Extended exposure to change in rainfall patterns and permanent land-use change (LUC) have reduced th...