Shortwave forcing of the Earth’s climate: Modern and historical variations in the Sun’s irradiance and the Earth’s reflectance
نویسندگان
چکیده
Changes in the Earth’s radiation budget are driven by changes in the balance between the thermal emission from the top of the atmosphere and the net sunlight absorbed. The shortwave radiation entering the climate system depends on the Sun’s irradiance and the Earth’s reflectance. Often, studies replace the net sunlight by proxy measures of solar irradiance, which is an oversimplification used in efforts to probe the Sun’s role in past climate change. With new helioseismic data and new measures of the Earth’s reflectance, we can usefully separate and constrain the relative roles of the net sunlight’s two components, while probing the degree of their linkage. First, this is possible because helioseismic data provide the most precise measure ever of the solar cycle, which ultimately yields more profound physical limits on past irradiance variations. Since irradiance variations are apparently minimal, changes in the Earth’s climate that seem to be associated with changes in the level of solar activity—the Maunder Minimum and the Little Ice age for example— would then seem to be due to terrestrial responses to more subtle changes in the Sun’s spectrum of radiative output. This leads naturally to a linkage with terrestrial reflectance, the second component of the net sunlight, as the carrier of the terrestrial amplification of the Sun’s varying output. Much progress has also been made in determining this difficult to measure, and not-so-well-known quantity. We review our understanding of these two closely linked, fundamental drivers of climate. r 2007 Elsevier Ltd. All rights reserved.
منابع مشابه
Sunshine, Earthshine and Climate Change I. Origin Of, and Limits on Solar Variability
Changes in the earth’s climate depend on changes in the net sunlight reaching us. The net depends on the sun’s output and earth’s reflectance, or albedo. Here we develop the limits on the changes in the sun’s output in historical times based on the physics of the origin of solar cycle changes. Many have suggested that the sun’s output could have been 0.5% less during the Maunder minimum, wherea...
متن کاملA multi-data comparison of shortwave climate forcing changes
[1] Traditionally the Earth’s reflectance has been assumed to be roughly constant, but large decadal variability, not reproduced by current climate models, has been reported lately from a variety of sources. We compare here the available data sets related to Earth’s reflectance, in order to assess the observational constraints on the models. We find a consistent picture among all data sets of a...
متن کاملAn assessment of the solar irradiance record for climate studies
Total solar irradiance, the spatially and spectrally integrated radiant output from the Sun at a mean Sun-Earth distance of 1 astronomical unit, provides nearly all the energy driving the Earth’s climate system. Variations in this energy, particularly over long time scales, contribute to changes in Earth’s climate and have been linked to historical glaciation and inter-glacial periods as well a...
متن کاملGlobal analysis of radiative forcing from fire-induced shortwave albedo change
Land surface albedo, a key parameter to derive Earth’s surface energy balance, is used in the parameterization of numerical weather prediction, climate monitoring and climate change impact assessments. Changes in albedo due to fire have not been fully investigated on a continental and global scale. The main goal of this study, therefore, is to quantify the changes in instantaneous shortwave alb...
متن کاملSpectral Solar Irradiance and Its Entropic Effect on Earth's Climate
The high-resolution measurements of the spectral solar irradiance (SSI) at the top of the Earth’s atmosphere by the Solar Radiation and Climate Experiment (SORCE) satellite are used to examine the magnitude and spectral distribution of the Earth’s entropy flux from the TOA incident solar radiation. Two extreme cases are examined by using Planck expression: I. isotropic hemispheric incident sola...
متن کامل