most citedEfficient high-order analysis of bowtie nanoantennas using the locally corrected Nystrom method

8 citations · 15 across the 4 of their papers we have counts for

collaborators

5 papers

hep-ph2022

Report of the Topical Group on Physics Beyond the Standard Model at Energy Frontier for Snowmass 2021

Tulika Bose, Antonio Boveia, Caterina Doglioni +318

This is the Snowmass2021 Energy Frontier (EF) Beyond the Standard Model (BSM) report. It combines the EF topical group reports of EF08 (Model-specific explorations), EF09 (More gen…

physics.acc-ph2022

PetaVolts per meter Plasmonics: Snowmass21 White Paper

Aakash A. Sahai, Mark Golkowski, Stephen Gedney +10

Plasmonic modes offer the potential to achieve PetaVolts per meter fields, that would transform the current paradigm in collider development in addition to non-collider searches in…

physics.optics2016★ 2 cited

Accurate and Versatile High-Order Modeling of Electromagnetic Scattering on Plasmonic Nanostructures

Hamid T. Chorsi, Stephen D. Gedney

This paper presents high-order (HO) electromagnetic modeling of plasmonic nanostructures based on the Locally Corrected Nystrom (LCN) method. Advanced nanophotonic and nanoplasmoni…

cond-mat.mes-hall2016★ 5 cited

Numerical Modeling of MEMS Resonators

Hamid T. Chorsi, Meysam T. Chorsi, Stephen D. Gedney

Microelectromechanical systems (MEMS) resonators serve as frequency selective components in applications ranging from biology to communications. In this paper, the dynamic behavior…

physics.optics2016★ 8 cited

Efficient high-order analysis of bowtie nanoantennas using the locally corrected Nystrom method

Hamid T. Chorsi, Stephen D. Gedney

It is demonstrated that the Locally Corrected Nystrom (LCN) method is a versatile and numerically efficient computational method for the modeling of scattering from plasmonic bowti…