Effect of Polarization Field on the Photocurrent Characteristics of GaN/AlN Multi-Quantum-Well Avalanche Photodiode
Polarization is an important property of GaN/AlN multi-quantum-well (MQW) avalanche diode (MAPD) but has been ignored in recent analyses of MAPD to simplify the Monte Carlo simulation. Here, the photocurrent characteristics of GaN/AlN MAPD are investigated to understand the role of polarization fiel...
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Zusammenfassung: | Polarization is an important property of GaN/AlN multi-quantum-well (MQW)
avalanche diode (MAPD) but has been ignored in recent analyses of MAPD to
simplify the Monte Carlo simulation. Here, the photocurrent characteristics of
GaN/AlN MAPD are investigated to understand the role of polarization field in
the MQW structure. Carrier multiplication in AlN/GaN MAPD is found as a result
of interfacial impact ionization not much helped from external field but
instead considerably contributed by the polarization field. In addition, the
movement of ionized electrons out of quantum well is proved as Fowler-Nordheim
tunneling process helped by the polarization field in AlN barrier. Furthermore,
the transport of ionized electrons through MQW structure is found influenced by
the reverse polarization field in GaN layer, which could be suppressed by the
external electric field. With all the three effects, the quick photocurrent
increase of GaN/AlN MAPD is ascribed to the efficient transport of
interfacial-ionized electrons step by step out of MQW at high voltages, which
is in big difference from conventional APD due to avalanche breakdown. |
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DOI: | 10.48550/arxiv.1808.10582 |