A random path length model for X-ray avalanche photodiodes (APDs) has been used to assess the effects of carriers' dead spaces and injection position on the avalanche gain distributions. Significant carrier's dead space, typically found in submicrometer avalanche regions, is found to reduce spread in the avalanche gain distribution, which is consistent with the reduced excess noise factors observed in conventional APDs. Mixed carrier-type injection increases the spread in the gain distribution along the avalanche region. The model was validated by comparing the results with experimental X-ray spectra from a GaAs/ Al0.8Ga0.2As separate absorption and multiplication APD. Good agreement was achieved between measured and simulated data. Avalanc...
Realistic Monte Carlo simulations for the avalanche gain of absorbed X-ray photons were carried out ...
Abstract-Approximate analytical expressions are derived for the mean gain and the excess noise facto...
For applications requiring the detection of low light levels, avalanche photodiodes (APDs) are the p...
A random path length model for X-ray avalanche photodiodes (APDs) has been used to assess the effect...
The effect of dead space on the mean gain, the excess noise factor, and the avalanche breakdown volt...
The effect of dead space on the statistics of the gain in a double-carrier-multiplication avalanche ...
The effect of dead space on the statistics of the gain process in continuous-multiplication avalanch...
The conventional McIntyre carrier multiplication theory for avalanche photodiodes (APDs) does not ad...
Mean gain characteristics based on carrier pair injected position in avalanche photodiodes (APDs) is...
A theoretical investigation into the avalanche statistics limited energy resolution of avalanche pho...
Mean gain characteristics based on carrier pair injected position in avalanche photodiodes (APDs) is...
Mean gain characteristics based on carrier pair injected position in avalanche photodiodes (APDs) is...
Mean gain characteristics based on carrier pair injected position in avalanche photodiodes (APDs) is...
Mean gain characteristics based on carrier pair injected position in avalanche photodiodes (APDs) is...
Background and motivation: Avalanche Photodiodes are optoelectrical devices with an internal gain pr...
Realistic Monte Carlo simulations for the avalanche gain of absorbed X-ray photons were carried out ...
Abstract-Approximate analytical expressions are derived for the mean gain and the excess noise facto...
For applications requiring the detection of low light levels, avalanche photodiodes (APDs) are the p...
A random path length model for X-ray avalanche photodiodes (APDs) has been used to assess the effect...
The effect of dead space on the mean gain, the excess noise factor, and the avalanche breakdown volt...
The effect of dead space on the statistics of the gain in a double-carrier-multiplication avalanche ...
The effect of dead space on the statistics of the gain process in continuous-multiplication avalanch...
The conventional McIntyre carrier multiplication theory for avalanche photodiodes (APDs) does not ad...
Mean gain characteristics based on carrier pair injected position in avalanche photodiodes (APDs) is...
A theoretical investigation into the avalanche statistics limited energy resolution of avalanche pho...
Mean gain characteristics based on carrier pair injected position in avalanche photodiodes (APDs) is...
Mean gain characteristics based on carrier pair injected position in avalanche photodiodes (APDs) is...
Mean gain characteristics based on carrier pair injected position in avalanche photodiodes (APDs) is...
Mean gain characteristics based on carrier pair injected position in avalanche photodiodes (APDs) is...
Background and motivation: Avalanche Photodiodes are optoelectrical devices with an internal gain pr...
Realistic Monte Carlo simulations for the avalanche gain of absorbed X-ray photons were carried out ...
Abstract-Approximate analytical expressions are derived for the mean gain and the excess noise facto...
For applications requiring the detection of low light levels, avalanche photodiodes (APDs) are the p...