oxide defects
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Author(s):  
Fernando Leonel Aguirre ◽  
Alok Ranjan ◽  
Nagarajan Raghavan ◽  
Andrea Padovani ◽  
Sebastian Matias Pazos ◽  
...  

Author(s):  
Christoph Wilhelmer ◽  
Markus Jech ◽  
Dominic Waldhoer ◽  
Al-Moatasem Bellah El-Sayed ◽  
Lukas Cvitkovich ◽  
...  

Micromachines ◽  
2020 ◽  
Vol 11 (4) ◽  
pp. 446
Author(s):  
Bernhard Stampfer ◽  
Franz Schanovsky ◽  
Tibor Grasser ◽  
Michael Waltl

Miniaturization of metal-oxide-semiconductor field effect transistors (MOSFETs) is typically beneficial for their operating characteristics, such as switching speed and power consumption, but at the same time miniaturization also leads to increased variability among nominally identical devices. Adverse effects due to oxide traps in particular become a serious issue for device performance and reliability. While the average number of defects per device is lower for scaled devices, the impact of the oxide defects is significantly more pronounced than in large area transistors. This combination enables the investigation of charge transitions of single defects. In this study, we perform random telegraph noise (RTN) measurements on about 300 devices to statistically characterize oxide defects in a Si/SiO 2 technology. To extract the noise parameters from the measurements, we make use of the Canny edge detector. From the data, we obtain distributions of the step heights of defects, i.e., their impact on the threshold voltage of the devices. Detailed measurements of a subset of the defects further allow us to extract their vertical position in the oxide and their trap level using both analytical estimations and full numerical simulations. Contrary to published literature data, we observe a bimodal distribution of step heights, while the extracted distribution of trap levels agrees well with recent studies.


2020 ◽  
Vol 107 (5-6) ◽  
pp. 2409-2416
Author(s):  
Young Cheol Jeong ◽  
Seung Jun Lee ◽  
Tae Won Park ◽  
Hong Kyu Kim ◽  
Young Tae Cho

Author(s):  
Dominic Waldhoer ◽  
Al-Moatasem Bellah El-Sayed ◽  
Yannick Wimmer ◽  
Michael Waltl ◽  
Tibor Grasser

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