Observation of avalanche propagation by multiplication assisted diffusion in p-n junctions
Andrea L. Lacaita, M. Mastrapasqua, Massimo Ghioni, S. Vanoli
Abstract
Andrea L. Lacaita, M. Mastrapasqua, Massimo Ghioni, S. Vanoli
Abstract
We have investigated for the first time the propagation of the avalanche multiplication over the area of p-n junctions reverse biased above the breakdown voltage. The multiplication process spreads from the point where the avalanche is triggered to the whole junction area with a speed proportional to the final steady-state value of the avalanche current. The values of the propagation speed suggest that the phenomenon is due to diffusion of carriers assisted by avalanche multiplication. This effect strongly affects the rise of the avalanche current and turns out to limit the performance of single photon avalanche diodes.
OpenAlex reports 51 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
We have investigated for the first time the propagation of the avalanche multiplication over the area of p-n junctions reverse biased above the breakdown voltage. The multiplication process spreads from the point where the avalanche is triggered to the whole junction area with a speed proportional to the final steady-state value of the avalanche current. The values of the propagation speed suggest that the phenomenon is due to diffusion of carriers assisted by avalanche multiplication. This effect strongly affects the rise of the avalanche current and turns out to limit the performance of single photon avalanche diodes.
Key concepts: Avalanche breakdown, Avalanche diode, Single-photon avalanche diode, Zener diode, Avalanche photodiode, Multiplication (music), Diffusion, Diode