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Luca Selmi’s research interests include various topics in the field of Micro and Nano‐electronics. Among these: modeling and simulation of silicon devices, with emphasis on high field transport phenomena, Monte Carlo transport simulation techniques and hot carrier effects in MOSFETs, silicon bipolars and and Non Volatile Memory cells, quasi ballistic transport in nanoMOSFETs, CHE and CHISEL injection in MOSFETs and NVM cells, hot electron effects at low voltages, gate leakage currents and reliability of ultra thin oxides, statistical characterization of SILC, device characterization, optimization and parasitic extraction, Bulk and SOI MOSFET scaling in the deca‐nanometer range, photon emission and electro‐luminescence in MOSFETs, design of simple circuit blocks for high frequency wireless telecom applications. Recently his research interests extended to the area of nanoelectronic ion sensors and biosensors. These research activities have been conducted in cooperation with international research centers and semiconductor industries such as Philips Research Laboratories in Eindhoven and Leuven, INPG Grenoble, Infineon Technologies Villach and Munich, ST Microelectronics (Agrate Brianza), Bell Labs and Agere Systems, IBM T.J.Watson Res. Center and LETI Grenoble.
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IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERINGno. 4 (2024): 1115-1126
JOURNAL OF NEURAL ENGINEERINGno. 2 (2024)
ENGINEERING APPLICATIONS OF ARTIFICIAL INTELLIGENCEno. Part A (2024): 107246-107246
2023 IEEE SENSORSpp.1-4, (2023)
IEEE TRANSACTIONS ON ELECTRON DEVICESno. 4 (2023): 2135-2141
IEEE SENSORS JOURNALno. 17 (2023): 20180-20188
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2023 IEEE SENSORSpp.1-4, (2023)
IEEE SENSORSpp.1-4, (2022)
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