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Carrier generation and recombination - Wikipedia
In solid-state physics of semiconductors, carrier generation and carrier recombination are processes by which mobile charge carriers (electrons and electron holes) are created and eliminated. Carrier generation and recombination processes are fundamental to the operation of many optoelectronic … See more
Like other solids, semiconductor materials have an electronic band structure determined by the crystal properties of the material. Energy distribution among electrons is described by the Fermi level and the See more
Carrier recombination can happen through multiple relaxation channels. The main ones are band-to-band recombination, Shockley–Read–Hall … See more
Non-radiative recombination is a process in phosphors and semiconductors, whereby charge carriers recombine releasing See more
Recombination and generation are always happening in semiconductors, both optically and thermally. As predicted by thermodynamics, … See more
Band-to-band radiative recombination
Band-to-band recombination is the name for the process of electrons jumping down from the conduction band to the valence band in a radiative manner. During band-to-band recombination, a form of spontaneous emission See moreWikipedia text under CC-BY-SA license Carrier lifetime - Wikipedia
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Carrier Generation and Recombination - Engineering …
Jan 29, 2021 · Carrier Generation and Recombination. Carrier generation is defined as the process whereby electron and holes are created and recombination is the process whereby electrons and holes are annihilated. …
Chapter 10 - Generation and Recombination …
In this chapter, we consider generation and recombination processes in semiconductors. In a semiconductor, electrons and holes can be either generated or recombined within a given volume, thereby changing the local carrier …
3.1.3 Carrier Recombination and Generation - TU Wien
Recombination and generation of electrons and holes is a process by which both carriers are either created or destroyed. Figure 3.2: Carrier recombination mechanisms in semiconductors. Figure 3.2 shows the most important …
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