研究目的
Investigating hydrostatic pressure and temperature effects on electron energy levels of an InAs spherical segment quantum dot with wetting layer embedded in GaAs barrier.
研究成果
The ground, the first and the second excited state energies decrease (increase) as the hydrostatic pressure (temperature) increases for the constant temperature (pressure). The linear and the third-order nonlinear absorptions and dispersions for the probe pulse exhibit red (blue) shifts as the hydrostatic pressure (temperature) increases at the constant temperature (pressure). The group velocity of the probe pulse in the system increases as the control Rabi frequency increases, and the slow light frequency range shifts to the lower probe frequencies as the hydrostatic pressure increases.
研究不足
Not explicitly mentioned in the abstract.