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Configurable Electrostatically Doped High Performance Bilayer Graphene Tunnel FET

Mesoscale and Nanoscale Physics 2016-05-06 v3

Abstract

A bilayer graphene based electrostatically doped tunnel field-effect transistor (BED-TFET) is proposed in this work. Unlike graphene nanoribbon TFETs in which the edge states deteriorate the OFF-state performance, BED-TFETs operate based on different bandgaps induced by vertical electric fields in the source, channel, and drain regions without any chemical doping. The performance of the transistor is evaluated by self-consistent quantum transport simulations. This device has several advantages: 1) ultra-low power (VDD=0.1V), 2) high performance (ION/IOFF>104), 3) steep subthreshold swing (SS<10mv/dec), and 4) electrically configurable between N-TFET and P-TFET post fabrication. Here, the operation principle of the BED-TFET and its performance sensitivity to the device design parameters are studied.

Keywords

Cite

@article{arxiv.1509.03593,
  title  = {Configurable Electrostatically Doped High Performance Bilayer Graphene Tunnel FET},
  author = {Fan W. Chen and Hesameddin Ilatikhameneh and Gerhard Klimeck and Zhihong Chen and Rajib Rahman},
  journal= {arXiv preprint arXiv:1509.03593},
  year   = {2016}
}

Comments

4 pages, 6 figures in 2016 Journal of the Electron Device Society

R2 v1 2026-06-22T10:54:47.783Z