Faquir C. Jain
Professor/Electrical and Computer Engr
Storrs Mansfield
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Scholarly Contributions
256 Scholarly Contributions
Mid to Long Wave Infrared Photodetectors Using Intra-Mini-Energy Band Transitions in GeOx Cladded Ge Quantum Dot Superlattice (QDSL) FETs
2022
Research Type: Journal Article
Mid to Long Wave Infrared Photodetectors using Intra-Mini-Energy band Transitions in GeOx Cladded Ge Quantum Dot Superlattice (QDSL) FETs
2022
Research Type: Journal Article
Miniaturized Needle-Implantable Glucose Sensors, using 65nm CMOS Technology, 29th Annual Symposium of Connecticut Microelectronics and Optoelectronics Consortium (CMOC), Storrs, CT, USA, October 2nd, 2020.
2020
Research Type: Poster/Presentation
Modeling and Fabrication of Cladded Ge Quantum Dot Gate Silicon MOSFETs Exhibiting 3State Behavior
Research Type: Conference Proceedings
Modeling and Fabrication of Cladded Ge Quantum Dot Gate Si MOSFETs Exhibiting 3State Behavior
Research Type: Conference Proceedings
Modeling and Fabrication of Ge)x-Ge Cladded Quantum Dot Channel (QDC) FETs on Poly-Silicon
2018
Research Type: Journal Article
Modeling and Fabricaton of Quatnum Dot Channel (QDC) Field-Effect Transistors
2014
Research Type: Poster/Presentation
Modeling and fabrication of GeOx-Ge Cladded Quantum Dot Channel (QDC) FETs on Poly-Silicon
2017
Research Type: Poster/Presentation
Modeling of Multi-State Si and Ge Cladded Quantum Dot Gate FETs Using Verilog and ABM Simulations
2019
Research Type: Journal Article
Modeling of Multi-State Si and Ge Cladded Quantum Dot Gate FETs using Verilog and ABM Simulations
2020
Research Type: Journal Article
Modeling of Quantum Dot Channel (QDC) Si FETs at Sub-Kelvin for Multi-State Logic
2020
Research Type: Journal Article
Mulistate operation in quantum dot channel FETs incorporating spatial wavefunctionswitching
2012
Research Type: Journal Article
Multi-Bit SRAMs, Registers, and Logic Using Quantum Well Channel SWS-FETs for Low-Power, High-Speed Computing
2019
Research Type: Journal Article
Multi-Bit SRAMs, Registers, and logic using Quantum Well channel SWS-FETs for low-power, high-speed Computing
2020
Research Type: Journal Article
Multi-State 2-Bit CMOS Logic Using n- and p- Quantum Well Channel Spatial Wavefunction Switched (SWS) FETs
2018
Research Type: Journal Article
Multi-State Quantum Dot Channel (QDC) FETs for Multi-Bit Low-Power Computing
2021
Research Type: Other Scholarly Work