We investigate solar cycle signals in 150 years of Sea Level Pressure (SLP) and Sea Surface Temperature (SST) data, using multiple regression analysis. We detect a solar signal in both SLP and SST in the North Pacific during DJF, similar to that found by Van Loon et al. (2007) but of smaller magnitude. We do not, however, identify the signal they found in the tropics. Our results do not support mechanisms for a solar influence on climate directly involving tropical SSTs. We have used different reconstructions of total solar irradiance to investigate the sensitivity of the results. The series of Krivova ;Solanki and Foster give similar results to those acquired using sunspot number but the Hoyt ;Schatten solar index sometimes produces differ...
International audienceIn this paper we seek to identify inter-annual sea surface temperature anomali...
To understand solar cycle signals on the Earth's surface and identify the physical mechanisms respo...
International audienceIn this paper we seek to identify inter-annual sea surface temperature anomali...
We investigate solar cycle signals in 150 years of Sea Level Pressure (SLP) and Sea Surface Temperat...
We identify solar cycle signals in 155 years of global sea level pressure (SLP) and sea surface temp...
We identify solar cycle signals in 155 years of global sea level pressure (SLP) and sea surface temp...
The solar cycle signal in sea level pressure during 1856–2007 is analyzed. Using composites of data ...
Our fundamental aim is to investigate solar cycle signals in sea level pressure. In order to see if ...
Our fundamental aim is to investigate solar cycle signals in sea level pressure. In order to see if ...
Our fundamental aim is to investigate solar cycle signals in sea level pressure. In order to see if ...
The 11-year solar cycle signal in December-January-February (DJF) averaged mean sea level pressure (...
Applying statistical analyses to reanalysis products during the period 1900–2018, this study finds t...
Applying statistical analyses to reanalysis products during the period 1900–2018, this study finds t...
To understand solar cycle signals on the Earth's surface and identify the physical mechanisms respon...
We have recently suggested that the warming in the sea surface temperature (SST) since 1900, did not...
International audienceIn this paper we seek to identify inter-annual sea surface temperature anomali...
To understand solar cycle signals on the Earth's surface and identify the physical mechanisms respo...
International audienceIn this paper we seek to identify inter-annual sea surface temperature anomali...
We investigate solar cycle signals in 150 years of Sea Level Pressure (SLP) and Sea Surface Temperat...
We identify solar cycle signals in 155 years of global sea level pressure (SLP) and sea surface temp...
We identify solar cycle signals in 155 years of global sea level pressure (SLP) and sea surface temp...
The solar cycle signal in sea level pressure during 1856–2007 is analyzed. Using composites of data ...
Our fundamental aim is to investigate solar cycle signals in sea level pressure. In order to see if ...
Our fundamental aim is to investigate solar cycle signals in sea level pressure. In order to see if ...
Our fundamental aim is to investigate solar cycle signals in sea level pressure. In order to see if ...
The 11-year solar cycle signal in December-January-February (DJF) averaged mean sea level pressure (...
Applying statistical analyses to reanalysis products during the period 1900–2018, this study finds t...
Applying statistical analyses to reanalysis products during the period 1900–2018, this study finds t...
To understand solar cycle signals on the Earth's surface and identify the physical mechanisms respon...
We have recently suggested that the warming in the sea surface temperature (SST) since 1900, did not...
International audienceIn this paper we seek to identify inter-annual sea surface temperature anomali...
To understand solar cycle signals on the Earth's surface and identify the physical mechanisms respo...
International audienceIn this paper we seek to identify inter-annual sea surface temperature anomali...