2008Unpublished venueRequires access

Experimental study of mobility in [110]- and [100]-directed multiple silicon nanowire GAA MOSFETs on (100) SOI

Jiezhi Chen, Takuya Saraya, Kousuke Miyaji, Ken Shimizu, Toshiro Hiramoto

Open publisher page 45 citations

Abstract

Experimental investigations of silicon nanowire mobility characteristics on (100) SOI as shrinking nanowire width to sub-10 nm are reported. Accurate mobility estimations by advanced split CV method for 50~1000 nanowires are performed. For the first time, electron and hole mobility in [100]-directed nanowires are studied and compared with [110] nanowires. It is shown that both electron and hole mobility decreases monotonically and electron mobility of [100]-directed nanowire tends to be comparable to that of [110]-directed nanowire as decreasing nanowire width.

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What this paper is about

Experimental investigations of silicon nanowire mobility characteristics on (100) SOI as shrinking nanowire width to sub-10 nm are reported. Accurate mobility estimations by advanced split CV method for 50~1000 nanowires are performed. For the first time, electron and hole mobility in [100]-directed nanowires are studied and compared with [110] nanowires. It is shown that both electron and hole mobility decreases monotonically and electron mobility of [100]-directed nanowire tends to be comparable to that of [110]-directed nanowire as decreasing nanowire width.

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Available abstract

Experimental investigations of silicon nanowire mobility characteristics on (100) SOI as shrinking nanowire width to sub-10 nm are reported. Accurate mobility estimations by advanced split CV method for 50~1000 nanowires are performed. For the first time, electron and hole mobility in [100]-directed nanowires are studied and compared with [110] nanowires. It is shown that both electron and hole mobility decreases monotonically and electron mobility of [100]-directed nanowire tends to be comparable to that of [110]-directed nanowire as decreasing nanowire width.

Key concepts: Nanowire, Materials science, Electron mobility, Silicon on insulator, Silicon, Silicon nanowires, Optoelectronics, MOSFET

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