LAUSR.org creates dashboard-style pages of related content for over 1.5 million academic articles. Sign Up to like articles & get recommendations!

An analytical 2-D model of triple metal double gate graded channel junctionless MOSFET with hetero-dielectric gate oxide stack

Photo from wikipedia

In this paper, a two-dimensional analytical model of a laterally graded-channel triplemetal double-gate Junctionless Field Effect Transistor with hetero dielectric gate oxide stack consisting of SiO2 and HfO2 is derived.… Click to show full abstract

In this paper, a two-dimensional analytical model of a laterally graded-channel triplemetal double-gate Junctionless Field Effect Transistor with hetero dielectric gate oxide stack consisting of SiO2 and HfO2 is derived. The model illustrates higher drive current and better performance against hazardous SCEs and HCEs in below 30 nm regime. Parabolic approximation method is used here to construct channel potentials and electric fields by solving 2-D Poisson’s equation with applicable boundary conditions. The basic central and surface potentials as well as central and surface electric fields are being illustrated, Threshold voltage, DIBL, sub-threshold swing (SS) and a compact current model have also been deduced. These parameters clearly show the benefits of proposed graded-channel triple-metal double-gate structure with hetero-dielectric gate oxide stack. The device has reliability in low power applications because of its better Ion and Ioff control. Finally, the analytical model is validated with self-consistent numerical calculations to illustrate better performance of among available junctionless devices.

Keywords: double gate; analytical model; gate; graded channel; model; hetero dielectric

Journal Title: Solid State Communications
Year Published: 2021

Link to full text (if available)


Share on Social Media:                               Sign Up to like & get
recommendations!

Related content

More Information              News              Social Media              Video              Recommended



                Click one of the above tabs to view related content.