Publication | Open Access
Dirac-source diode with sub-unity ideality factor
19
Citations
35
References
2022
Year
An increase in power consumption necessitates a low-power circuit technology to extend Moore's law. Low-power transistors, such as tunnel field-effect transistors (TFETs), negative-capacitance field-effect transistors (NC-FETs), and Dirac-source field-effect transistors (DS-FETs), have been realised to break the thermionic limit of the subthreshold swing (SS). However, a low-power rectifier, able to overcome the thermionic limit of an ideality factor (η) of 1 at room temperature, has not been proposed yet. In this study, we have realised a DS diode based on graphene/MoS<sub>2</sub>/graphite van der Waals heterostructures, which exhibits a steep-slope characteristic curve, by exploiting the linear density of states (DOSs) of graphene. For the developed DS diode, we obtained η < 1 for more than four decades of drain current (η<sub>ave_4dec</sub> < 1) with a minimum value of 0.8, and a rectifying ratio exceeding 10<sup>8</sup>. The realisation of a DS diode represents an additional step towards the development of low-power electronic circuits.
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