Investigation of the Impact of Different Dielectrics on the Characteristics of AlN/β-Ga2O3 HEMT
- Authors: Meenakshi Chauhan1, Kanjalochan Jena2, Raghuvir Tomar3, Abdul Naim Khan4
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View Affiliations Hide AffiliationsAffiliations: 1 Department of Electronics and Communication Engineering, The LNM Institute of Information Technology, Jaipur, India 2 Department of Electronics and Communication Engineering, The LNM Institute of Information Technology, Jaipur, India 3 Department of Electronics and Communication Engineering, The LNM Institute of Information Technology, Jaipur, India 4 Department of Electronics and Communication Engineering, The LNM Institute of Information Technology, Jaipur, India
- Source: Nanoelectronic Devices and Applications , pp 189-202
- Publication Date: July 2024
- Language: English
Investigation of the Impact of Different Dielectrics on the Characteristics of AlN/β-Ga2O3 HEMT, Page 1 of 1
< Previous page | Next page > /docserver/preview/fulltext/9789815238242/chapter-9-1.gifIn the present research, a β-Ga2O3 high electron mobility transistor is proposed for investigating the implementation of high-k dielectric materials. The implementation of the dielectrics, Si3N4 , Al2O3 , and HfO2, at the interface of aluminum nitride (AlN) and the gate is depicted to determine the optimal selection. The novelty of the device lies in the highly doped n+ material with a broader gap between ohmic contact and the barrier layers. The performance is computed regarding the transfer and output characteristics, transconductance, gate capacitance, 2nd and 3rd-order transconductance, sub-threshold voltage, on-resistance and output conductance. The crucial parameters for switching and linearity performance are also assessed. The results demonstrate significant improvements in dynamic and access resistance, leading to a remarkably high transconductance (Gm ) value of 0.15 S/µm and a peak drain current density of 650 A/mm at Vds = 5 V. These promising results pave the way for potential applications in high-power radio frequency and microwave devices, making the proposed device a promising candidate for future advancements in these fields.
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