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Laser theory of Fabry-Perot (FP) semiconductor lasers proves to be nonlinear, since the gain, the refractive index and the loss coefficient are the functions of energy flux. The nonlinear theory made it possible to explain a number of experiments some of which could not even be explained (for example, natural linewidth), much less modeled, on the basis of other theoretical models; this suggests that the nonlinear theory developed is a new paradigm of the laser theory.

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  • Nonlinear theory of semiconductor lasers (en)
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  • Laser theory of Fabry-Perot (FP) semiconductor lasers proves to be nonlinear, since the gain, the refractive index and the loss coefficient are the functions of energy flux. The nonlinear theory made it possible to explain a number of experiments some of which could not even be explained (for example, natural linewidth), much less modeled, on the basis of other theoretical models; this suggests that the nonlinear theory developed is a new paradigm of the laser theory. (en)
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  • http://commons.wikimedia.org/wiki/Special:FilePath/Experimental_and_theoretical_output_power_versus_current_for_a_powerful_laser.jpg
  • http://commons.wikimedia.org/wiki/Special:FilePath/Simulating_experimental_curve_of_the_natural_linewidth_of_Fabry-Perot_semiconductor_lasers.jpg
  • http://commons.wikimedia.org/wiki/Special:FilePath/Versus_energy_flux_I_for_two_sets_of_characteristic_parameters.jpg
  • http://commons.wikimedia.org/wiki/Special:FilePath/Wavelength_shift_Δλ_versus_normalized_current.jpg
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  • Laser theory of Fabry-Perot (FP) semiconductor lasers proves to be nonlinear, since the gain, the refractive index and the loss coefficient are the functions of energy flux. The nonlinear theory made it possible to explain a number of experiments some of which could not even be explained (for example, natural linewidth), much less modeled, on the basis of other theoretical models; this suggests that the nonlinear theory developed is a new paradigm of the laser theory. (en)
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