Optoelectronic Systems Theory Assignment
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For a cylindrical diffraction-limited optical system (Fig. 1), on which a plane monochromatic wave with length
\lambdaand amplitudeA=1falls, find:- A coherent transfer function
\tilde{h}(\nu_x)and plot its graph - An optical transfer function
\tilde{H}_N^{OS}(\nu_x)and plot its graph
- A coherent transfer function
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Find a polychromatic transfer function
\tilde{H}^{PC}(\nu_x)for the radiation of a corresponding blackbody with temperatureT, if the image is formed in the rear focal plane, and the spectral sensitivity of the radiation receiver is approximated by a Gaussian distribution with a mathematical expectation of 600 nm and a standard deviation of 100 nm. The pupil functionP(\xi)is shown in Figure 2. -
Find the time-frequency spectrum of the radiation flux
\tilde{\Phi}_t(\nu_t)and the magnitude of the radiation flux\Phi_t(t)in the image analysis plane of the optical system at the output of the modulator of the image analyzer during its linear scanning (Fig. 3) and plot their graphs. The optical system is a lens with a normalized scattering functionH_N^{OS}(x', y')=\delta(x', y'), the source of radiation is an object in the form of a rectangle with a constant energy brightnessL_0, the study of which obeys Lambert's law. The modulator of the image analyzer is a lattice with a cosine distribution of the transmission coefficient along the x axis.