Abstract We describe the evolutionary response of northern and southern hemisphere summer monsoons to orbital forcing over the past 280,000 years using a fully coupled general circulation ocean-atmosphere model in which the orbital forcing is accelerated by a factor of 100. We find a strong and positive response of northern (southern) summer monsoon precipitation to northern (southern) summer insolation forcing. On average, July (January) precipitation maxima and JJA (DJF) precipitation maxima have high coherence and are approximately in phase with June (December) insolation maxima, implying an average lag between forcing and response of about 30 of phase at the precession period. The average lag increases to over 40 for 4-month precipitat...
Orbital forcing is a key climate driver over multi-millennial timescales. In particular, monsoon sys...
The impacts of dynamic vegetation on interannual and interdecadal variability of Asian summer monsoo...
Abstract Instrumental and proxy records indicate remarkable global climate variability over the last...
The importance of orbital forcing and ocean impact on the Asian summer monsoon in the Holocene is in...
In this study, we use a sophisticated high-resolution atmosphere-ocean coupled climate model, EC-Ear...
The response of the six major summer monsoon systems (the North American monsoon, the northern Afric...
The responses of Asian summer monsoon and associated precipitation to orbital forcing have been inte...
Orbital forcing exerts a strong influence on global monsoon systems, with higher summer insolation l...
Monsoon is the major manifestation of the seasonal cycle in the tropical regions, and there is a wid...
To study the time-dependent response of the Asian summer monsoon to obliquity forcing, we analyze a ...
Climate models, forced only with insolation, indicate that boreal summer monsoons respond to orbital...
We examine the response of the Indian and East Asian summer monsoons to separate precession and obli...
Orbital forcing is a key climate driver over multi-millennial timescales. In particular, monsoon sys...
The impacts of dynamic vegetation on interannual and interdecadal variability of Asian summer monsoo...
Abstract Instrumental and proxy records indicate remarkable global climate variability over the last...
The importance of orbital forcing and ocean impact on the Asian summer monsoon in the Holocene is in...
In this study, we use a sophisticated high-resolution atmosphere-ocean coupled climate model, EC-Ear...
The response of the six major summer monsoon systems (the North American monsoon, the northern Afric...
The responses of Asian summer monsoon and associated precipitation to orbital forcing have been inte...
Orbital forcing exerts a strong influence on global monsoon systems, with higher summer insolation l...
Monsoon is the major manifestation of the seasonal cycle in the tropical regions, and there is a wid...
To study the time-dependent response of the Asian summer monsoon to obliquity forcing, we analyze a ...
Climate models, forced only with insolation, indicate that boreal summer monsoons respond to orbital...
We examine the response of the Indian and East Asian summer monsoons to separate precession and obli...
Orbital forcing is a key climate driver over multi-millennial timescales. In particular, monsoon sys...
The impacts of dynamic vegetation on interannual and interdecadal variability of Asian summer monsoo...
Abstract Instrumental and proxy records indicate remarkable global climate variability over the last...