English

Charge trap layer enabled positive tunable V$_{fb}$ in $\beta$-Ga$_{2}$O$_{3}$ gate stacks for enhancement mode transistors

Applied Physics 2020-12-02 v1 Materials Science

Abstract

β\beta-Ga2_{2}O3_{3} based enhancement mode transistor designs are critical for the realization of low loss, high efficiency next generation power devices with rudimentary driving circuits. A novel approach towards attaining a high positive flat band voltage (Vfb_{fb}) of 10.6 V in β\beta-Ga2_{2}O3_{3} metal-oxide-semiconductor capacitors (MOSCAPs), with the ability to fine tune it between 3.5 V to 10.6 V, using a polycrystalline AlN charge trap layer has been demonstrated. This can enable enhancement mode operation over a wide doping range. Excellent Vfb_{fb} retention of {\sim}97% for 104^{4} s at 55 ^{\circ}C was exhibited by the gate stacks after charge trapping, hence reducing the requirement of frequent charge injection cycles. In addition, low gate leakage current density (Jg_{g}) for high negative gate voltages (Vg_{g}{\sim}-60 V) indicates the potential of this gate stack to enable superior breakdown characteristics in enhancement mode transistors.

Keywords

Cite

@article{arxiv.2005.05237,
  title  = {Charge trap layer enabled positive tunable V$_{fb}$ in $\beta$-Ga$_{2}$O$_{3}$ gate stacks for enhancement mode transistors},
  author = {Dipankar Biswas and Chandan Joishi and Jayeeta Biswas and Prabhans Tiwari and Saurabh Lodha},
  journal= {arXiv preprint arXiv:2005.05237},
  year   = {2020}
}

Comments

Single file (Manuscript and Supplementary material combined) of 19 pages. Total 5 and 4 figures in manuscript and supplementary material, respectively