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Lumerical Solutions fdtd method
Fdtd Method, supplied by Lumerical Solutions, 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/fdtd+method/fdtd+method/pmc11501628__j_nanoph___2021___0653_suppl-0-70-72
Average 90 stars, based on 1 article reviews
fdtd method - by Bioz Stars, 2026-09
90/100 stars

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Transmission Assay:

Article Title: Plasmon-enhanced exciton relocalization in quasi-2D perovskites for low-threshold room-temperature plasmonic lasing.
Article Snippet: .. The transmission spectra and the electric field distributions were calculated with the FDTD method (Lumerical Solutions Inc.). ..

Article Title: Spatio-spectral decomposition of complex eigenmodes in subwavelength nanostructures through transmission matrix analysis
Article Snippet: .. Supplementary Information Spatio-spectral decomposition of complex eigenmodes in subwavelength nanostructures through transmission matrix analysis Young-Ho Jin1, Juntaek Oh2,3, Wonshik Choi2,3,*, and Myung-Ki Kim1,* 1KU-KIST Graduate School of Converging Science and Technology, Korea University, Seoul 02841, Republic of Korea 2Center for Molecular Spectroscopy and Dynamics, Institute for Basic Science, Seoul 02841, Republic of Korea 3Department of Physics, Korea University, Seoul 02841, Republic of Korea *e-mail: wonshik@korea.ac.kr and rokmk@korea.ac.kr We employed the FDTD method (Lumerical Solutions, Inc.; https://www.lumerical.com/) to simulate the optical response of the nanoantennas. ..

other:

Article Title: Hierarchically Assembled Plasmonic Metal-Dielectric-Metal Hybrid Nano-Architectures for High-Sensitivity SERS Detection
Article Snippet: The EM field distribution was calculated with the FDTD method (Lumerical Solutions Inc., Vancouver, BC, Canada).

Article Title: Tunable Dual-Broadband Terahertz Absorber with Vanadium Dioxide Metamaterial
Article Snippet: The performance of the designed absorber is theoretically studied by using the FDTD method (Lumerical Solutions, Vancouver, BC, Canada).

Article Title: Porous edge confinement: High carrier potential and low activation energy barrier synergistically boosting the efficiency of selective photocatalytic CO2 conversion
Article Snippet: Catalysts which allow directional transfer of photogenerated electrons to catalytic sites are crucial to efficient photocatalytic CO2 reduction.. Herein, 2D BiOCl porous nanosheets (BOC-PNS) are prepared by triblock polymer (F127) assisted mechanical ball milling.. The main exposed plane is (001) on the BOC-PNS surface and the porous structure increases the edge (110) facet.

Article Title: Harmonizing material quantity and terahertz wave interference shielding efficiency with metallic borophene nanosheets
Article Snippet: With the knowledge of σ , we employed FDTD (FDTD, Lumerical Solutions Inc.) method to calculate the near-field distribution, charge distribution, and Joule heat loss within an individual borophene circular nanosheet.

Spectroscopy:

Article Title: Spatio-spectral decomposition of complex eigenmodes in subwavelength nanostructures through transmission matrix analysis
Article Snippet: .. Supplementary Information Spatio-spectral decomposition of complex eigenmodes in subwavelength nanostructures through transmission matrix analysis Young-Ho Jin1, Juntaek Oh2,3, Wonshik Choi2,3,*, and Myung-Ki Kim1,* 1KU-KIST Graduate School of Converging Science and Technology, Korea University, Seoul 02841, Republic of Korea 2Center for Molecular Spectroscopy and Dynamics, Institute for Basic Science, Seoul 02841, Republic of Korea 3Department of Physics, Korea University, Seoul 02841, Republic of Korea *e-mail: wonshik@korea.ac.kr and rokmk@korea.ac.kr We employed the FDTD method (Lumerical Solutions, Inc.; https://www.lumerical.com/) to simulate the optical response of the nanoantennas. ..



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Schematic diagram of microsphere-assisted fs-laser fabrication of hBN emitters and simulations. (a) Experimental design of the MPM with spacer over the hBN flake surface on the SiO 2 /Si substrate. Bottom: Side view of microsphere enhancement of the fs-laser focus. (b)–(e) <t>FDTD</t> simulation of the light field distribution of the MPM focus: (b) light distribution in the xz -plane and intensity distribution along the z -axis with direct contact between the MPM and the substrate. (c) Light distribution in the xy -plane and intensity distribution along the y -axis at the maximum intensity position with direct contact. (d) Light distribution in the xz -plane and intensity distribution along the z -axis with a 6 µm distance between hBN and microsphere. (e) Light distribution in the xy -plane and intensity distribution along the y -axis at the maximum intensity position with a 6 µm distance.
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Schematic diagram of microsphere-assisted fs-laser fabrication of hBN emitters and simulations. (a) Experimental design of the MPM with spacer over the hBN flake surface on the SiO 2 /Si substrate. Bottom: Side view of microsphere enhancement of the fs-laser focus. (b)–(e) FDTD simulation of the light field distribution of the MPM focus: (b) light distribution in the xz -plane and intensity distribution along the z -axis with direct contact between the MPM and the substrate. (c) Light distribution in the xy -plane and intensity distribution along the y -axis at the maximum intensity position with direct contact. (d) Light distribution in the xz -plane and intensity distribution along the z -axis with a 6 µm distance between hBN and microsphere. (e) Light distribution in the xy -plane and intensity distribution along the y -axis at the maximum intensity position with a 6 µm distance.

Journal: Nanophotonics

Article Title: Microsphere-assisted generation of localized optical emitters in 2D hexagonal boron nitride

doi: 10.1515/nanoph-2024-0625

Figure Lengend Snippet: Schematic diagram of microsphere-assisted fs-laser fabrication of hBN emitters and simulations. (a) Experimental design of the MPM with spacer over the hBN flake surface on the SiO 2 /Si substrate. Bottom: Side view of microsphere enhancement of the fs-laser focus. (b)–(e) FDTD simulation of the light field distribution of the MPM focus: (b) light distribution in the xz -plane and intensity distribution along the z -axis with direct contact between the MPM and the substrate. (c) Light distribution in the xy -plane and intensity distribution along the y -axis at the maximum intensity position with direct contact. (d) Light distribution in the xz -plane and intensity distribution along the z -axis with a 6 µm distance between hBN and microsphere. (e) Light distribution in the xy -plane and intensity distribution along the y -axis at the maximum intensity position with a 6 µm distance.

Article Snippet: Numerical simulations of the electromagnetic field were conducted using a finite-difference time-domain (FDTD) method in Ansys Lumerical FDTD for focusing analysis, and a finite element method (FEM) in COMSOL Multiphysics for optical WGMs.

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