Biblio
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The connection between the Atlantic Multidecadal Oscillation and the Indian Summer Monsoon since the Industrial Revolution is intrinsic to the climate system. Environmental Research Letters 13:094020, (2018).
The connection between the Atlantic Multidecadal Oscillation and the Indian Summer Monsoon in the CMIP5 models. Climate Dynamics (2017).doi:10.1007/s00382-017-4062-6
A New Method for Predicting the Decadal Component of Global SST. Atmospheric and Oceanic Science Letters 5, (2012).
Evaluation of ocean carbon cycle models with data-based metrics. Geophysical Research Letters 31, (2004). Abstract
The influence of low-frequency solar forcing on the East Asian winter monsoon based on HadCM3 and observations. Advances in Atmospheric Sciences 35, (2018).
Influence of Low-frequency Solar Forcing on the East Asian Winter Monsoon Based on HadCM3 and Observations. Advances in Atmospheric Sciences 35, (2018).
Simulated North Atlantic -Nordic Seas water mass exchanges in an isopycnic coordinate OGCM. Geophysical Research Letters 30, 1536-1539 (2003). Abstract
Evaluating Impacts of Recent Arctic Sea Ice Loss on the Northern Hemisphere Winter Climate Change. Geophysical Research Letters 45, (2018).
Diagnosing Ocean Tracer Transport from Sellafield and Dounreay by Equivalent Diffusion and Age. Advances in Atmospheric Sciences 25, 805-814 (2008). Abstract
A reassessment of the dispersion properites of 99Tc in the North Sea and the Norwegian Sea. Journal of Marine Systems 68, 24-38 (2007).
Inception of the Northern European ice sheet due to contrasting ocean and insolation forcing. Quaternary Research 67, 128-135 (2007).
Poleward ocean heat transports, sea ice processes, and Arctic sea ice variability in NorESM1-M simulations. Journal of Geophysical Research - Biogeosciences 119, (2014).
Importance of heat transport and local air-sea heat fluxes for Barents Sea climate variability. Journal of Geophysical Research 115, 11 (2010). Abstract
Role of the atmospheric and oceanic circulation in the tropical Pacific SST changes. Journal of Climate 21, 2019-2034 (2008).
Atmospheric response to the autumn sea-ice free Arctic and its detectability. Climate Dynamics (2015).doi:10.1007/s00382-015-2689-8
External forcing of the early 20th century Arctic warming. Tellus. Series A, Dynamic meteorology and oceanography 65, (2013).
Sea-ice free Arctic contributes to the projected warming minimum in North Atlantic. Environmental Research Letters 12:074004, (2017).
Marine-based multiproxy reconstruction of Atlantic multidecadal variability. Geophysical Research Letters 41, (2014).
Pacific contribution to the early twentieth-century warming in the Arctic. Nature Climate Change 8, (2018).
Decadal fingerprints of freshwater discharge around Greenland in a multi-model ensemble. Climate Dynamics (2013).doi:10.1007/s00382-012-1479-9