English

Cold source field-effect transistor with type-III band-aligned HfS$_2$/WTe$_2$ heterostructure

Materials Science 2026-03-13 v1 Mesoscale and Nanoscale Physics

Abstract

The cold source field-effect transistor (CSFET) is promising for reducing power dissipation in integrated circuits by engineering the density of states at the injecting source. Existing CSFET designs utilizing Dirac-source metals or p-Metal-n stacks are challenged by Schottky barriers at the metal-semiconductor interface. In this work, a 2D WTe2_2/HfS2_2 heterojunction with type-III band alignment is proposed to be an excellent design of cold source and CSFET. The architecture has a high band-to-band transport mechanism by removing the detrimental Schottky barrier issues. Importantly, the proposed CSFET has the same channel barrier modulation principle as conventional MOSFET to enable a high on-state current. Using first-principles-based quantum transport modeling, we predict a very high IonI_{\rm on}/IoffI_{\rm off} ratio at \sim 1010^{10}, a low subthreshold swing below the thermal limit for a wide range of gate voltages, reaching as small as 41.3 mV/dec, at low source-drain bias VDS=0.3V_{DS}=0.3 V\rm V. These findings establish a design principles for next-generation low-power nanoelectronic switches leveraging 2D van der Waals heterostructures.

Keywords

Cite

@article{arxiv.2603.11819,
  title  = {Cold source field-effect transistor with type-III band-aligned HfS$_2$/WTe$_2$ heterostructure},
  author = {Shujin Guo and Qing Shi and Deping Guo and Fei Liu and Xianghua Kong and Yonghong Zhao and Hong Guo},
  journal= {arXiv preprint arXiv:2603.11819},
  year   = {2026}
}

Comments

7 pages, 5 figures

R2 v1 2026-07-01T11:16:31.730Z