"$SolarSurfaceRM" 修訂間的差異
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index_left_contact= 2 : holes recombine at the left surface <br> |
index_left_contact= 2 : holes recombine at the left surface <br> |
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index_right_contact= 1 : electrons recombine at the right surface <br> |
index_right_contact= 1 : electrons recombine at the right surface <br> |
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− | + | index_right_contact= 2 : holes recombine at the right surface <br> |
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+ | <big>'''The $SolarSurfaceRM setting for 1D-DDCC in GUI interface '''</big> <br> |
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+ | 1.Press the '''Solar Cell Setting'''.<br> |
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+ | 2.Press the '''Solve for solar cell'''.<br> |
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+ | 3.Press the '''Consider surface recombination velocity(cm/s)''' and setting surface recombination velocity.<br> |
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+ | [[檔案:1d_$SolarSurfaceRM_fig1.jpg|1300px]] |
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Related commands: <br> |
Related commands: <br> |
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於 2024年9月26日 (四) 21:28 的最新修訂
$SolarSurfaceRM is the command for user to consider the surface recombination. Usually in 1D simulation, it is hard to consider the air/semiconductor surface state recombination. Therefore, user will need to consider an effective surface recombination velocity in the simulation to account for the surface recombination.
The format is
$SolarSurfaceRM Electron_SurfaceRM(cm/s) hole_SurfaceRM(cm/s) index_left_contact index_right_contact
Electron_SurfaceRM is the electron surface recombination velocity.
hole_SurfaceRM is the hole surface recombination velocity.
The way to obtain the velocity is
is the Electron Surface recombination is the hole Surface recombination
index_left_contact= 1 : electrons recombine at the left surface
index_left_contact= 2 : holes recombine at the left surface
index_right_contact= 1 : electrons recombine at the right surface
index_right_contact= 2 : holes recombine at the right surface
The $SolarSurfaceRM setting for 1D-DDCC in GUI interface
1.Press the Solar Cell Setting.
2.Press the Solve for solar cell.
3.Press the Consider surface recombination velocity(cm/s) and setting surface recombination velocity.
Related commands:
$ifsolargen, $solarstrength, $SolarSurfaceRM, $absorbtable, $ifsolarspectrum