João Guilherme Nizer Rahmeier

About João Guilherme Nizer Rahmeier

João Guilherme Nizer Rahmeier, With an exceptional h-index of 7 and a recent h-index of 7 (since 2020), a distinguished researcher at Carleton University, specializes in the field of Electromagnetism, Computational Electromagnetism, Electromagnetic Metamaterials, Nanoelectronics.

His recent articles reflect a diverse array of research interests and contributions to the field:

Time-Domain Analysis of Temporally and Spatially Dispersive Metasurfaces in GSTC-FDTD Frameworks

Field Scattering Analysis of Cylindrical Spatially Dispersive Metasurfaces

Spatially dispersive metasurfaces—Part III: Zero-thickness modeling of periodic and finite nonuniform surfaces

Part III-Spatially Dispersive Metasurfaces: Zero Thickness Modeling of Periodic and Finite Non-uniform Surfaces

Non-uniform Spatially Dispersive Metasurfaces as Locally Linear Space Invariant (LSI) Systems

Nonlinear FDTD Simulation of Optical Thin Films with Intensity-Dependent Drude-Lorentz Parameters

Electromagnetic Modeling of Sub-Wavelength Periodic Structures from Guided-Wave Devices to Metasurface Scatterers

Eigenfunction Analysis of Cylindrical Metasurfaces with Complete Tensorial Surface Susceptibilities

João Guilherme Nizer Rahmeier Information

University

Position

___

Citations(all)

164

Citations(since 2020)

161

Cited By

18

hIndex(all)

7

hIndex(since 2020)

7

i10Index(all)

7

i10Index(since 2020)

7

Email

University Profile Page

Google Scholar

João Guilherme Nizer Rahmeier Skills & Research Interests

Electromagnetism

Computational Electromagnetism

Electromagnetic Metamaterials

Nanoelectronics

Top articles of João Guilherme Nizer Rahmeier

Time-Domain Analysis of Temporally and Spatially Dispersive Metasurfaces in GSTC-FDTD Frameworks

IEEE Access

2024/2/8

Field Scattering Analysis of Cylindrical Spatially Dispersive Metasurfaces

Authorea Preprints

2023/10/30

Spatially dispersive metasurfaces—Part III: Zero-thickness modeling of periodic and finite nonuniform surfaces

IEEE Transactions on Antennas and Propagation

2023/5/12

João Guilherme Nizer Rahmeier
João Guilherme Nizer Rahmeier

H-Index: 2

Shulabh Gupta
Shulabh Gupta

H-Index: 18

Part III-Spatially Dispersive Metasurfaces: Zero Thickness Modeling of Periodic and Finite Non-uniform Surfaces

Authorea Preprints

2023/10/30

Non-uniform Spatially Dispersive Metasurfaces as Locally Linear Space Invariant (LSI) Systems

2023/3/26

Nonlinear FDTD Simulation of Optical Thin Films with Intensity-Dependent Drude-Lorentz Parameters

2023/3/26

Electromagnetic Modeling of Sub-Wavelength Periodic Structures from Guided-Wave Devices to Metasurface Scatterers

2023

Eigenfunction Analysis of Cylindrical Metasurfaces with Complete Tensorial Surface Susceptibilities

2022/7/10

Spatially dispersive zero thickness sheet model of all-dielectric metasurfaces

2022/7/10

Zero thickness surface susceptibilities and extended GSTCs—Part I: Spatially dispersive metasurfaces

IEEE Transactions on Antennas and Propagation

2022/4/7

João Guilherme Nizer Rahmeier
João Guilherme Nizer Rahmeier

H-Index: 2

Shulabh Gupta
Shulabh Gupta

H-Index: 18

Part II-Spatially dispersive metasurfaces: IE-GSTC-SD field solver with extended GSTCs

IEEE Transactions on Antennas and Propagation

2022/4/7

Spatially dispersive electromagnetic metasurfaces: Multipolar modeling vs extended GSTCs

2022/3/27

Dispersion Relation Extraction of Periodic Leaky-Wave Antennas using Complex Eigenmodes

2021/12/4

Zero thickness sheet model of dispersive & nonlinear metasurfaces

2021/12/4

Complex eigenmodes and eigenfrequencies in electromagnetics

IEEE Transactions on Antennas and Propagation

2021/2/24

Shape engineering for custom nanomagnetic logic circuits in nmlsim 2.0

IEEE Design & Test

2020/12/8

Millimeter-wave Huygens’ transmit arrays based on coupled metallic resonators

IEEE Transactions on Antennas and Propagation

2020/10/20

Geometry-based optimization of an in-plane nanomagnetic majority circuit

2020/7/5

FDTD simulation of dispersive metasurfaces with Lorentzian surface susceptibilities

IEEE Access

2020/5/5

Mapping between complex eigenmodes and complex propagation constant for uniform rectangular metallic waveguides

2020/3/15

See List of Professors in João Guilherme Nizer Rahmeier University(Carleton University)

Co-Authors

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