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The chapter introduces intersub-band transition using the simplest ideal case of an infinitely high barrier quantum well, along with a discussion on the wavelengths covered by the intersub-band transition in GaAs-based quantum well structures.
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In a simple and ideal case, the standard optically thick accretion disk model is successful to explain observations, such that the inner disk radius is constant at three times the Schwarzschild radius over large luminosity variations.
At a high enough magnification to avoid any optical distortion problem, and with a small electron beam dose rate, we expect the deviations from the ideal case to be simple.
From both Figures9 and10 we can verify that, also in this case, the simple statistical knowledge of the transition rates yields performance close to the ideal case where the interference activity is non-causally known.
To be frank, this is far from an ideal case.
China is the ideal case study for sport and capitalism.
In the ideal case, dretx=0.
Here for the ideal case.
Figure 4 represents the most ideal case.
Our simulations assumed the "ideal case".
The red line indicate the ideal case.
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