「$landscape1D」:修訂間差異
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Landscape1d | Landscape1d solves the localized landscape equation after the Poisson and drift-diffusion equations converge. If we want to solve the Poisson, drift-diffusion, and localized landscape self-consistently, we need to add another command [[$landscapeDOS]]. <br /> | ||
<big><big>'''Example'''</big></big> | <big><big>'''Example'''</big></big> | ||
$landscape1D | $landscape1D | ||
This only | This only solves the landscape potential 1/u after Poisson and drift-diffusion converged. If we set the command as | ||
$landscape1D | $landscape1D | ||
$landscapeDOS | $landscapeDOS | ||
The program will solve | The program will solve the Poisson drift-diffusion and landscape self-consistently. | ||
<big>'''The $landscape1D setting for 1D-DDCC in GUI interface '''</big> <br> | <big>'''The $landscape1D setting for 1D-DDCC in GUI interface '''</big> <br> | ||
於 2025年7月30日 (三) 23:47 的最新修訂
Landscape1d solves the localized landscape equation after the Poisson and drift-diffusion equations converge. If we want to solve the Poisson, drift-diffusion, and localized landscape self-consistently, we need to add another command $landscapeDOS.
Example
$landscape1D
This only solves the landscape potential 1/u after Poisson and drift-diffusion converged. If we set the command as
$landscape1D $landscapeDOS
The program will solve the Poisson drift-diffusion and landscape self-consistently.
The $landscape1D setting for 1D-DDCC in GUI interface
1.Press the Schrodinger Eigen Solver.
2.Press Enable potential landscape.