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How we can describe the polarizated light from a VCSEL laser?

Why we are interested in light? Because photons are the most fast particle in nature which we can control and detect it. By LASER cavities we can generate beams photons light polarized in two orthogonal directions.

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How we can describe the polarizated light from a VCSEL laser?

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  1. Why we are interested in light? Because photons are the most fast particle in nature which we can control and detect it. By LASER cavities we can generate beams photons light polarized in two orthogonal directions. Quantistic Physical Phenomena appears due to the chaotic and stochastic nature of the system, which generate a bistability in the polarization modes with an histeresis cycle. How we can describe the polarizated light from a VCSEL laser?

  2. EQUATIONS RATE in a Solitary LASER – Current controlled PARAMETERS DEFINITIONS AND VALUES USED

  3. Characteristic Intensities Modes- Current Current from 0.9 to 1,3 in 25 ns Current from 0.9 to 1,3 in 200 ns

  4. Characteristic Intensities Modes- Current Noise strength=1e-6 Noise strength=1e-4 Noise strength=1 Noise strength=1e-2

  5. Rate Equations model in Master-Slave configuration is defined as the difference between and the intermediate Frequency between the two linearly polarized modes of the solitary VCSEL .  y x 0

  6. Polarizationmodes in Master-Slave configuration withdifferentramp long scanof the injectedpower

  7. X-Mode PS encoding OR logic Output increasing Noise strength

  8. Probability of success Logic Operation

  9. Probability maps

  10. Optimal parameters

  11. Conclusions

  12. Thank you for your attention!

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