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Ratul Kumar Baruah

Researcher at Tezpur University

Publications -  27
Citations -  362

Ratul Kumar Baruah is an academic researcher from Tezpur University. The author has contributed to research in topics: Transistor & Subthreshold slope. The author has an hindex of 8, co-authored 18 publications receiving 270 citations. Previous affiliations of Ratul Kumar Baruah include Indian Institute of Technology Guwahati & Purdue University.

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A Dual-Material Gate Junctionless Transistor With High- $k$ Spacer for Enhanced Analog Performance

TL;DR: In this paper, the authors presented a simulation study of analog circuit performance parameters for a symmetric double-gate junctionless transistor (DGJLT) using dual-material gate along with high-k spacer dielectric (DMG-SP) on both sides of the gate oxides of the device.
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Impact of high-k spacer on device performance of a junctionless transistor

TL;DR: In this article, the impact of spacer dielectric on both sides of gate oxide on the device performance of a symmetric double-gate junctionless transistor (DGJLT) is reported for the first time.
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Flexible submental sensor patch with remote monitoring controls for management of oropharyngeal swallowing disorders

TL;DR: A skin-mountable sensor patch that can fit on the curvature of the submental (under the chin) area noninvasively and provide simultaneous remote monitoring of muscle activity and laryngeal movement during swallowing tasks and maneuvers is presented.
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The effect of high-k gate dielectrics on device and circuit performances of a junctionless transistor

TL;DR: In this article, the impacts of high-k gate dielectric permittivity on the device and circuit performances of a double-gate junctionless transistor (DGJLT) are studied with the help of extensive device simulations.
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Fractal Web Design of a Hemispherical Photodetector Array with Organic‐Dye‐Sensitized Graphene Hybrid Composites

TL;DR: A fractal web design of a hemispherical photodetector array that contains an organic-dye-sensitized graphene hybrid composite is reported to serve as an effective photoactive component with enhanced light-absorbing capabilities.