DocumentCode
2828435
Title
Vertical InAs nanowire MOSFETs with IDS = 1.34 mA/µm and gm = 1.19 mS/µm at VDS = 0.5 V
Author
Persson, Karl-Magnus ; Berg, Martin ; Borg, Mattias ; Wu, Jun ; Sjöland, Henrik ; Lind, Erik ; Wernersson, Lars-Erik
Author_Institution
Dept. of Electr.- & Inf. Technol., Lund Univ., Lund, Sweden
fYear
2012
fDate
18-20 June 2012
Firstpage
195
Lastpage
196
Abstract
III-V MOSFETs are currently considered for extension of, or as an add-on to, the Si CMOS technology. Following the Si-technology evolution, it is attractive to consider advanced III-V transistor architectures with non-planar geometry and improved electrostatic control. We report on vertical InAs single nanowire FETs with diameter of 45 nm diameter, integrated on Si substrates with LG = 200 nm. The devices demonstrate normalized extrinsic gm and IDS of 1.34 S/mm and 1.19 A/mm, respectively, at a VDS of 0.5 V, and with an onresistance of 321 Ωμm, all values normalized to the circumference. The main performance limitation is identified as the drain resistance in the ungated top part of the wire. By scaling the NW diameter to 28 nm, we also observe subthreshold swing down to 80 mV/decade at 50 mV VDS. However, the on-resistance increases for the narrow wires to 75 kΩμm, and the normalized current level is reduced as compared to the larger diameter wires.
Keywords
CMOS integrated circuits; III-V semiconductors; MOSFET; field effect transistors; indium compounds; nanowires; silicon; III-V MOSFET; III-V transistor architecture; InAs; Si CMOS technology; electrostatic control; nonplanar geometry; resistance 321 muohm; single nanowire FET; size 45 nm; vertical InAs nanowire MOSFET; voltage 0.5 V; FETs; Hafnium compounds; Logic gates; Performance evaluation; Resistance; Transconductance; Wires;
fLanguage
English
Publisher
ieee
Conference_Titel
Device Research Conference (DRC), 2012 70th Annual
Conference_Location
University Park, TX
ISSN
1548-3770
Print_ISBN
978-1-4673-1163-2
Type
conf
DOI
10.1109/DRC.2012.6256966
Filename
6256966
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