2013EU PVSECOpen access

A Simple Emitter Model for Quantum Efficiency Curves and Extracting the Emitter Saturation Current

B. Fischer, Jens Müller, P.P. Altermatt

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Abstract

We developed a two-parameter model for emitters that can be used (i) to extract the emitter saturation current J0E from the short-wavelength range of internal quantum efficiency (IQE) curves and (ii) to quantify the short-circuit current loss caused by recombination in the emitter. The main advantage is that only the emitter sheet resistance is required as an additional input parameter; no dopant profiles, surface recombination velocities etc. are necessary. The information obtained from the IQE also allows for calculating the saturation current of the metalized emitter underneath the front contacts.

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What this paper is about

We developed a two-parameter model for emitters that can be used (i) to extract the emitter saturation current J0E from the short-wavelength range of internal quantum efficiency (IQE) curves and (ii) to quantify the short-circuit current loss caused by recombination in the emitter. The main advantage is that only the emitter sheet resistance is required as an additional input parameter; no dopant profiles, surface recombination velocities etc. are necessary. The information obtained from the IQE also allows for calculating the saturation current of the metalized emitter underneath the front contacts.

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Available abstract

We developed a two-parameter model for emitters that can be used (i) to extract the emitter saturation current J0E from the short-wavelength range of internal quantum efficiency (IQE) curves and (ii) to quantify the short-circuit current loss caused by recombination in the emitter. The main advantage is that only the emitter sheet resistance is required as an additional input parameter; no dopant profiles, surface recombination velocities etc. are necessary. The information obtained from the IQE also allows for calculating the saturation current of the metalized emitter underneath the front contacts.

Key concepts: Common emitter, Saturation current, Quantum efficiency, Saturation (graph theory), Optoelectronics, Materials science, Current (fluid), Range (aeronautics)

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