Direct experimental determination of voltage across high-low junctions
T. Daud, F.A. Lindholm
Abstract
T. Daud, F.A. Lindholm
Abstract
High-low (HL) junctions form part of many semiconductor devices, including back surface field solar cells. A first experimental determination and interpretation of the voltage across the HL junction under low- and high-injection conditions is presented as a function of the voltage across a nearby p/n junction. Theoretical analysis from first principles is shown to bear well on the experimental results. In addition, a test structure is proposed for measurement of the effective surface recombination velocity at the HL junctions.
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High-low (HL) junctions form part of many semiconductor devices, including back surface field solar cells. A first experimental determination and interpretation of the voltage across the HL junction under low- and high-injection conditions is presented as a function of the voltage across a nearby p/n junction. Theoretical analysis from first principles is shown to bear well on the experimental results. In addition, a test structure is proposed for measurement of the effective surface recombination velocity at the HL junctions.
Key concepts: Voltage, Optoelectronics, Materials science, Semiconductor, Physics, Quantum mechanics