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Remcom Inc fdtd method
Fdtd Method, supplied by Remcom 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/fdtd+method/fdtd+method/pmc03350759-70-16-18
Average 90 stars, based on 1 article reviews
fdtd method - by Bioz Stars, 2026-09
90/100 stars

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Article Title: Electric field enhancements around the nanorod on the base layer
Article Snippet: In this paper, we perform the FDTD method (Remcom XFDTD) to calculate the E field distributions of the rod-film nanostructures and the individual nanorods.

Article Title: Flexible Transceiver Array for Ultrahigh Field Human MR Imaging
Article Snippet: Specific Absorption Rate (SAR) evaluation of the proposed flexible transceiver array was performed numerically by using FDTD method (Remcom Inc, State College, PA).

Transmission Electron Microscopy:

Article Title: ESMRMB 2009 Congress, Antalya, Turkey, 1–3 October: EPOS tm Posters / Paper Posters / Info-RESO
Article Snippet: Quantitative perfusion imaging has emerged as an important tool in various clinical settings, such as early detection of abnormalities, the differentiation between different types of diseases or monitoring of response to treatment.. Post-processing of perfusion data usually requires the fit of a more or less physiological model to measured tissue curves, yielding various hemodynamic parameters.. A variety of models has been successfully applied in different clinical settings (e.g. 1,2); however, it can be tedious to implement a new model from scratch.



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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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