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liuronglin

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First  AMPS will calculate the basic band diagram, built-in potential, electric field, free carrier populations , and trapped carrier populations present in a device when there is no(voltage or light) biasing of any kind. These thermodynamic equilibrium solutions allow the device designer to "see what the device will look like."

Then AMPS will take these thermodynamic equilibrium solutions and use them as starting guesses for the iterative scheme that will lead to the complete characterization of a device under voltage bias, illumination bias, or voltage and illumination bias. AMPS will generate output such as the band diagram (including quasi-Fermi levels), carrier populations, currents, recombination profiles, current-voltage (I-V) characteristics, and spectral response can be obtained for devices under various levels of voltage, illumination, or voltage and illumination bias.

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liuronglin(½ð±Ò+5): 2011-03-31 18:11:50
First  AMPS will calculate the basic band diagram, built-in potential, electric field, free carrier populations , and trapped carrier populations present in a device when there is no(voltage or light) biasing of any kind. These thermodynamic equilibrium solutions allow the device designer to "see what the device will look like."

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2Â¥2011-03-31 17:04:04
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liuronglin(½ð±Ò+5, ·­ÒëEPI+1): 2011-03-31 18:11:46
Then AMPS will take these thermodynamic equilibrium solutions and use them as starting guesses for the iterative scheme that will lead to the complete characterization of a device under voltage bias, illumination bias, or voltage and illumination bias. AMPS will generate output such as the band diagram (including quasi-Fermi levels), carrier populations, currents, recombination profiles, current-voltage (I-V) characteristics, and spectral response can be obtained for devices under various levels of voltage, illumination, or voltage and illumination bias.
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3Â¥2011-03-31 17:13:05
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