TY - GEN
T1 - Direct observation of channel hot-electron energy in short-channel metal-oxide-semiconductor field-effect transistors
AU - Zhang, Gang
AU - Yang, Cheng
AU - Li, Hua Min
AU - Shen, Tian Zi
AU - Yoo, Won Jong
PY - 2010
Y1 - 2010
N2 - An experimental method is proposed to extract the channel hot-electron (CHE) energy (φe) in the nano-meter-scaled metal-oxide- semiconductor field-effect transistors (MOSFETs). Accelerated by localized electric field in the drain induced channel depletion region, the CHEs obtain larger kinetic energy than the other unaccelerated channel electrons, and they gain greater probability of tunneling through the gate oxide so as to enlarge the gate leakage current. By monitoring the CHE enhanced gate leakage transients and solving the one-dimensional Schrödinger equation, the reduced gate barrier height (φB) and the φe can be extracted. This method is applicable to the short-channel MOSFETs with a channel length less than 150nm with promising accuracy, and it is advantageous owing to its simplicity and timely-applicability to the very recent ultra-small-feature-sized MOSFETs.
AB - An experimental method is proposed to extract the channel hot-electron (CHE) energy (φe) in the nano-meter-scaled metal-oxide- semiconductor field-effect transistors (MOSFETs). Accelerated by localized electric field in the drain induced channel depletion region, the CHEs obtain larger kinetic energy than the other unaccelerated channel electrons, and they gain greater probability of tunneling through the gate oxide so as to enlarge the gate leakage current. By monitoring the CHE enhanced gate leakage transients and solving the one-dimensional Schrödinger equation, the reduced gate barrier height (φB) and the φe can be extracted. This method is applicable to the short-channel MOSFETs with a channel length less than 150nm with promising accuracy, and it is advantageous owing to its simplicity and timely-applicability to the very recent ultra-small-feature-sized MOSFETs.
UR - https://www.scopus.com/pages/publications/78751514470
U2 - 10.1109/ICSICT.2010.5667466
DO - 10.1109/ICSICT.2010.5667466
M3 - Conference contribution
AN - SCOPUS:78751514470
SN - 9781424457984
T3 - ICSICT-2010 - 2010 10th IEEE International Conference on Solid-State and Integrated Circuit Technology, Proceedings
SP - 894
EP - 896
BT - ICSICT-2010 - 2010 10th IEEE International Conference on Solid-State and Integrated Circuit Technology, Proceedings
T2 - 2010 10th IEEE International Conference on Solid-State and Integrated Circuit Technology
Y2 - 1 November 2010 through 4 November 2010
ER -