English

Can Tunnel Transistors Scale Below 10nm?

Mesoscale and Nanoscale Physics 2016-04-08 v2

Abstract

The main promise of tunnel FETs (TFETs) is to enable supply voltage (VDDV_{DD}) scaling in conjunction with dimension scaling of transistors to reduce power consumption. However, reducing VDDV_{DD} and channel length (LchL_{ch}) typically deteriorates the ON- and OFF-state performance of TFETs, respectively. Accordingly, there is not yet any report of a high perfor]mance TFET with both low VDD_{DD} (\sim0.2V) and small LchL_{ch} (\sim6nm). In this work, it is shown that scaling TFETs in general requires scaling down the bandgap EgE_g and scaling up the effective mass mm^* for high performance. Quantitatively, a channel material with an optimized bandgap (Eg1.2qVDD[eV]E_g\sim1.2qV_{DD} [eV]) and an engineered effective mass (m140VDD2.5[m01]m*^{-1}\sim40 V_{DD}^{2.5} [m_0^{-1}]) makes both VDDV_{DD} and LchL_{ch} scaling feasible with the scaling rule of Lch/VDD=30 nm/VL_{ch}/V_{DD}=30~nm/V for LchL_{ch} from 15nm to 6nm and corresponding VDDV_{DD} from 0.5V to 0.2V.

Keywords

Cite

@article{arxiv.1509.08032,
  title  = {Can Tunnel Transistors Scale Below 10nm?},
  author = {Hesameddin Ilatikhameneh and Gerhard Klimeck and Rajib Rahman},
  journal= {arXiv preprint arXiv:1509.08032},
  year   = {2016}
}

Comments

4 pages, 5 figures

R2 v1 2026-06-22T11:06:16.156Z