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- W2033936455 abstract "We carry out bipolar Monte Carlo (MC) simulations of electron and hole transport in a multi-quantum well light-emitting diode with an electron-blocking layer. The MC simulation accounts for the most important interband recombination and intraband scattering processes and solves self-consistently for the non-quasiequilibrium transport. The fully bipolar MC simulator results in better convergence than our previous Monte Carlo-drift-diffusion (MCDD) model and also shows clear signatures of hot holes. Accounting for both hot electron and hot hole effects increases the total current and decreases the efficiency especially at high bias voltages. We also present our in-house full band structure calculations for GaN to be coupled later with the MC simulation in order to enable even more detailed predictions of device operation." @default.
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- W2033936455 date "2015-09-01" @default.
- W2033936455 modified "2023-09-23" @default.
- W2033936455 title "Bipolar Monte Carlo simulation of hot carriers in III-N LEDs" @default.
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- W2033936455 doi "https://doi.org/10.1109/sispad.2015.7292342" @default.
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