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To develop an efficient computational model to capture the underlying physics associated with the plasma filament formation and its dynamics during high power microwave breakdown in air/gas under different discharge conditions.
Coupled Maxwell-Plasma and Fluid Equations solved using numerical techniques: FDTD, Finite Differences and CFD.
Working on identifying a suitable physical model to properly describe the HPM breakdown process.
Research Interests
Papers共 19 篇Author StatisticsCo-AuthorSimilar Experts
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JOURNAL OF PHYSICS D-APPLIED PHYSICSno. 1 (2024)
Nur Yildirim,Hannah Richardson,Maria T. Wetscherek, Junaid Bajwa, Joseph Jacob,Mark A. Pinnock,Stephen Harris,Daniel Coelho de Castro,Shruthi Bannur,Stephanie L. Hyland,Pratik Ghosh,Mercy Ranjit,Kenza Bouzid,Anton Schwaighofer,Fernando Perez-Garcia,Harshita Sharma,Ozan Oktay,Matthew Lungren,Javier Alvarez-Valle,Aditya Nori,Anja Thieme
PROCEEDINGS OF THE 2024 CHI CONFERENCE ON HUMAN FACTORS IN COMPUTING SYTEMS, CHI 2024 (2024): 1-22
ACM Transactions on Computer-Human Interactionno. 5 (2023): 1-33
2022 IEEE MICROWAVES, ANTENNAS, AND PROPAGATION CONFERENCE, MAPCONpp.404-409, (2022)
Satyadev Patel, Dhwanil Shah,Krish Shah, Darsh Rank, Malhaar Thakore, Aditya Arya,Pratik Ghosh,Bhaskar Chaudhury
2022 IEEE 29TH INTERNATIONAL CONFERENCE ON HIGH PERFORMANCE COMPUTING, DATA AND ANALYTICS WORKSHOP, HIPCWpp.70-70, (2022)
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2022 IEEE International Conference on Plasma Science (ICOPS) (2022)
2021 IEEE MTT-S International Microwave and RF Conference (IMARC) (2021)
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Author Statistics
#Papers: 19
#Citation: 47
H-Index: 4
G-Index: 6
Sociability: 4
Diversity: 1
Activity: 3
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