Albedo, internal heat, and energy balance of Jupiter - Preliminary results of the Voyager infrared investigation

Astronomy and Astrophysics – Astronomy

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Albedo, Heat Balance, Infrared Astronomy, Jupiter (Planet), Planetary Radiation, Thermal Radiation, Energy Distribution, Infrared Radiation, Solar Heating, Thermal Absorption, Jupiter, Albedo, Interiors, Heat, Energy, Voyager 1, Infrared, Iris, Radiometry, Wavelengths, Spectrum, Models, Thermal Effects, Emissions, Infrared Interferometry Spectrometer, Brightness Temperature, Heat Flux, Data, Calibrations, Radiometer

Scientific paper

Full disk measurements recorded by the 0.4-1.7 micron radiometer on Voyager 1 indicate a geometric albedo of 0.274 + or - 0.013. This measurement and the Pioneer-based phase integral of 1.25 yield a Jovian Bond albedo of 0.343 + or - 0.032. Infrared spectra yield a thermal emission of 1.359 + or - 0.014 x .001 W/sq cm, which corresponds to an equivalent blackbody temperature of 124.4 + or - 0.3 K. In addition, the internal heat flux of Jupiter is estimated to be 5.444 + or - 0.425 x .0001 W/sq cm, and the energy balance defined as the ratio of emitted thermal to absorbed solar energy is 1.668 + or - 0.085.

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