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COMSOL Inc full-wave solver fdtd
Full Wave Solver Fdtd, supplied by COMSOL Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/full-wave+solver+comsol/full+wave+solver+fdtd/pmc04751612-85-5-8
Average 90 stars, based on 1 article reviews
full-wave solver fdtd - by Bioz Stars, 2026-09
90/100 stars

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Article Title: The local density of optical states of a metasurface
Article Snippet: Microscopically, one could use a full-wave solver (FDTD, COMSOL) for every wave vector in the integral in equation .



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Frequency response obtained from 2D simulations performed with COMSOL Multiphysics.

Journal: Molecules

Article Title: Magnetless Optical Circulator Based on an Iron Garnet with Reduced Magnetization Saturation

doi: 10.3390/molecules26154692

Figure Lengend Snippet: Frequency response obtained from 2D simulations performed with COMSOL Multiphysics.

Article Snippet: We have performed two- and three-dimensional simulations with the full-wave electromagnetic solvers COMSOL Multiphysics and CST Studio Suite in order to demonstrate the feasibility of the magnetless optical circulator.

Techniques:

H z distribution at the center frequency f 0 obtained from 2D simulations performed with COMSOL Multiphysics for excitation at ( a ) port 1, ( b ) port 3, and ( c ) port 2.

Journal: Molecules

Article Title: Magnetless Optical Circulator Based on an Iron Garnet with Reduced Magnetization Saturation

doi: 10.3390/molecules26154692

Figure Lengend Snippet: H z distribution at the center frequency f 0 obtained from 2D simulations performed with COMSOL Multiphysics for excitation at ( a ) port 1, ( b ) port 3, and ( c ) port 2.

Article Snippet: We have performed two- and three-dimensional simulations with the full-wave electromagnetic solvers COMSOL Multiphysics and CST Studio Suite in order to demonstrate the feasibility of the magnetless optical circulator.

Techniques:

Frequency response obtained from 3D simulations performed with COMSOL Multiphysics.

Journal: Molecules

Article Title: Magnetless Optical Circulator Based on an Iron Garnet with Reduced Magnetization Saturation

doi: 10.3390/molecules26154692

Figure Lengend Snippet: Frequency response obtained from 3D simulations performed with COMSOL Multiphysics.

Article Snippet: We have performed two- and three-dimensional simulations with the full-wave electromagnetic solvers COMSOL Multiphysics and CST Studio Suite in order to demonstrate the feasibility of the magnetless optical circulator.

Techniques:

H z distribution at the center frequency f 0 obtained from 3D simulations performed with COMSOL Multiphysics for excitation at ( a ) port 1, ( b ) port 3, and ( c ) port 2.

Journal: Molecules

Article Title: Magnetless Optical Circulator Based on an Iron Garnet with Reduced Magnetization Saturation

doi: 10.3390/molecules26154692

Figure Lengend Snippet: H z distribution at the center frequency f 0 obtained from 3D simulations performed with COMSOL Multiphysics for excitation at ( a ) port 1, ( b ) port 3, and ( c ) port 2.

Article Snippet: We have performed two- and three-dimensional simulations with the full-wave electromagnetic solvers COMSOL Multiphysics and CST Studio Suite in order to demonstrate the feasibility of the magnetless optical circulator.

Techniques:

S-parameters of the circulator obtained from TCMT equations and 2D simulations with COMSOL Multiphysics.

Journal: Molecules

Article Title: Magnetless Optical Circulator Based on an Iron Garnet with Reduced Magnetization Saturation

doi: 10.3390/molecules26154692

Figure Lengend Snippet: S-parameters of the circulator obtained from TCMT equations and 2D simulations with COMSOL Multiphysics.

Article Snippet: We have performed two- and three-dimensional simulations with the full-wave electromagnetic solvers COMSOL Multiphysics and CST Studio Suite in order to demonstrate the feasibility of the magnetless optical circulator.

Techniques: