Analysis shows intense laser field alters energy levels and third-harmonic generation in quantum wells, suggesting applications in semiconductor technology.
Key Points
Increasing intense laser field intensity shifts energy levels and affects electron localization in quantum wells.
Distinct trends in energy differences E₂₁, E₃₁/₂, and E₄₁/₃ are observed under varying intense laser fields.
The dipole moment matrix elements fluctuate significantly at higher laser intensities, indicating the complexity of electron interactions.
These findings highlight the potential of intense laser fields as a tunable parameter for enhancing nonlinear optical responses.