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Absorption cross sections obtained from the finite-difference time domain <t>(FDTD)</t> simulations for the Au nanorods with a diameter of 17 nm and an aspect ratio of 2.7. (A) Directions of E (electric field) and k (wave vector) of the lights are perpendicular and parallel to the axial direction of the Au nanorod, respectively. (B) Directions of E and k of the lights are parallel and perpendicular to the axial direction of the Au nanorod, respectively.
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Absorption cross sections obtained from the finite-difference time domain <t>(FDTD)</t> simulations for the Au nanorods with a diameter of 17 nm and an aspect ratio of 2.7. (A) Directions of E (electric field) and k (wave vector) of the lights are perpendicular and parallel to the axial direction of the Au nanorod, respectively. (B) Directions of E and k of the lights are parallel and perpendicular to the axial direction of the Au nanorod, respectively.
Fdtd Simulation Program, 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
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Absorption cross sections obtained from the finite-difference time domain <t>(FDTD)</t> simulations for the Au nanorods with a diameter of 17 nm and an aspect ratio of 2.7. (A) Directions of E (electric field) and k (wave vector) of the lights are perpendicular and parallel to the axial direction of the Au nanorod, respectively. (B) Directions of E and k of the lights are parallel and perpendicular to the axial direction of the Au nanorod, respectively.
Fdtd Software Package, 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
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Absorption cross sections obtained from the finite-difference time domain <t>(FDTD)</t> simulations for the Au nanorods with a diameter of 17 nm and an aspect ratio of 2.7. (A) Directions of E (electric field) and k (wave vector) of the lights are perpendicular and parallel to the axial direction of the Au nanorod, respectively. (B) Directions of E and k of the lights are parallel and perpendicular to the axial direction of the Au nanorod, respectively.
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Lumerical Solutions nanophotonic modeling software fdtd solutions
Absorption cross sections obtained from the finite-difference time domain <t>(FDTD)</t> simulations for the Au nanorods with a diameter of 17 nm and an aspect ratio of 2.7. (A) Directions of E (electric field) and k (wave vector) of the lights are perpendicular and parallel to the axial direction of the Au nanorod, respectively. (B) Directions of E and k of the lights are parallel and perpendicular to the axial direction of the Au nanorod, respectively.
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Lumerical Solutions 3-d fdtd simulation software fdtd solutions by lumerical solutions
Absorption cross sections obtained from the finite-difference time domain <t>(FDTD)</t> simulations for the Au nanorods with a diameter of 17 nm and an aspect ratio of 2.7. (A) Directions of E (electric field) and k (wave vector) of the lights are perpendicular and parallel to the axial direction of the Au nanorod, respectively. (B) Directions of E and k of the lights are parallel and perpendicular to the axial direction of the Au nanorod, respectively.
3 D Fdtd Simulation Software Fdtd Solutions By Lumerical Solutions, 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
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Absorption cross sections obtained from the finite-difference time domain (FDTD) simulations for the Au nanorods with a diameter of 17 nm and an aspect ratio of 2.7. (A) Directions of E (electric field) and k (wave vector) of the lights are perpendicular and parallel to the axial direction of the Au nanorod, respectively. (B) Directions of E and k of the lights are parallel and perpendicular to the axial direction of the Au nanorod, respectively.

Journal: ACS Omega

Article Title: Can Plasmonic Effect Cause an Increase in the Catalytic Reduction of p -nitrophenol by Sodium Borohydride over Au Nanorods?

doi: 10.1021/acsomega.0c00052

Figure Lengend Snippet: Absorption cross sections obtained from the finite-difference time domain (FDTD) simulations for the Au nanorods with a diameter of 17 nm and an aspect ratio of 2.7. (A) Directions of E (electric field) and k (wave vector) of the lights are perpendicular and parallel to the axial direction of the Au nanorod, respectively. (B) Directions of E and k of the lights are parallel and perpendicular to the axial direction of the Au nanorod, respectively.

Article Snippet: FDTD simulation was used to obtain the cross section of Au nanorod surface plasmons with commercial FDTD software (Canadian Lumerical Solutions 7.5).

Techniques: Plasmid Preparation