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Black bodies



radiometry photometry A black body is a theoretical object absorbing all the electromagnetic energy it receives, which creates thermal agitation. At equilibrium, ie at constant temperature, all the energy absorbed is re-emitted in electromagnetic radiation also called thermal radiation. Indeed, the black body absorption coefficient as well as its emissivity are equal to "1". The emission depends then only on the temperature. A black body is a Lambertian source radiating therefore identically in all directions.

The emittance of a black body is given by the Stefan-Boltzman law:

radiometry-photometry formula.

T is the temperature.

Its radiance is :

radiometry-photometry formula.

radiometry-photometry formula.

The radiance is also calculated as follows :

radiometry-photometry formula.

radiometry photometry radiometry-photometry formula is the spectral radiance at T. It is given by the following formula :

radiometry-photometry formula.

The spectral radiance as a function of the wavelength is shown for different temperature on the left curves.

radiometry-photometry formula,

radiometry-photometry formula

radiometry-photometry formula is maximum for a wavelength λM satisfying :

radiometry-photometry formula.

radiometry-photometry formula.

Thus, λM decreases with temperature.

For "real" bodies, the spectral emissivity ελ is not equal to unity. It is calculated as follows, radiometry-photometry formula and radiometry-photometry formula being the spectral radiances respectively of the "real" body and of the black body at the same temperature :

radiometry-photometry formula.

The total emissivity of the "real" body is :

radiometry-photometry formula.

It is smaller than 1.

Grey bodies have a spectral emissivity ε which is not dependant on the wavelength. Therefore, their spectral radiance is:

radiometry-photometry formula.

The wavelength for the maximum spectral radiance remains the same than for a black body at the same temperature :

radiometry-photometry formula.

The radiance and emittance are :

radiometry-photometry formula.

radiometry-photometry formula.