Climate variability exists at all timescales—and climatic processes are intimately coupled, so that understanding variability at any one timescale requires some understanding of the whole. Records of the Earth's surface temperature illustrate this interdependence, having a continuum of variability following a power-law scaling1, 2, 3, 4, 5, 6, 7. But although specific modes of interannual variability are relatively well understood8, 9, the general controls on continuum variability are uncertain and usually described as purely stochastic processes10, 11, 12, 13. Here we show that power-law relationships of surface temperature variability scale with annual and Milankovitch-period (23,000- and 41,000-year) cycles. The annual cycle corresponds ...
Climate changes are due to anthropogenic factors, volcano eruptions and the natural variability of t...
The past provides evidence of abrupt climate shifts and changes in the frequency of climate and weat...
The climatological annual cycle in surface air temperature, defined by its amplitude and phase lag w...
Author Posting. © Nature Publishing Group, 2006. This is the author's version of the work. It is po...
Continuum temperature variability represents the response of the Earth's climate to deterministic ...
Continuum temperature variability represents the response of the Earth's climate to deterministic ex...
Observed climate time series covering several centuries are often characterized by fluctuations on m...
This is the author accepted manuscript. The final version is available from Springer Nature via the ...
Continuum temperature variability represents the response of the Earth's climate to determinist...
The vast majority of variability in the instrumental surface temperature record is at annual frequen...
Continuum temperature variability represents the response of the Earth’s climate to deterministic ex...
The annual cycle in the Earth's surface temperature is extremely large—comparable in magnitude to th...
Global mean surface temperature (GMST) fluctuates over decadal to multidecadal time-scales. Patterns...
Precession of the equinoxes has no effect on the mean annual insolation, but does modulate the ampli...
The annual cycle is the dominant mode of climate variability for most aspects of climate that humans...
Climate changes are due to anthropogenic factors, volcano eruptions and the natural variability of t...
The past provides evidence of abrupt climate shifts and changes in the frequency of climate and weat...
The climatological annual cycle in surface air temperature, defined by its amplitude and phase lag w...
Author Posting. © Nature Publishing Group, 2006. This is the author's version of the work. It is po...
Continuum temperature variability represents the response of the Earth's climate to deterministic ...
Continuum temperature variability represents the response of the Earth's climate to deterministic ex...
Observed climate time series covering several centuries are often characterized by fluctuations on m...
This is the author accepted manuscript. The final version is available from Springer Nature via the ...
Continuum temperature variability represents the response of the Earth's climate to determinist...
The vast majority of variability in the instrumental surface temperature record is at annual frequen...
Continuum temperature variability represents the response of the Earth’s climate to deterministic ex...
The annual cycle in the Earth's surface temperature is extremely large—comparable in magnitude to th...
Global mean surface temperature (GMST) fluctuates over decadal to multidecadal time-scales. Patterns...
Precession of the equinoxes has no effect on the mean annual insolation, but does modulate the ampli...
The annual cycle is the dominant mode of climate variability for most aspects of climate that humans...
Climate changes are due to anthropogenic factors, volcano eruptions and the natural variability of t...
The past provides evidence of abrupt climate shifts and changes in the frequency of climate and weat...
The climatological annual cycle in surface air temperature, defined by its amplitude and phase lag w...