Color Routing and Beam Steering of Single‐Molecule Emission with a Spherical Silicon Nanoantenna
We experimentally demonstrate broadband directional emission from single molecules using a single spherical silicon nanoparticle assembled via DNA origami. By varying nanoparticle (NP) size and emitter position, we achieve unidirectional emission, beam steering, and color routing at the nanoscale, revealing modal interference as the underlying ...
María Sanz‐Paz +9 more
wiley +1 more source
Fragme∩t: An Open-Source Framework for Multiscale Quantum Chemistry Based on Fragmentation. [PDF]
Broderick DR +8 more
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Simulation Analysis of Thermal Deformation and Extruded Profile Formability of Al-10Mg-3Zn Aluminum Alloy. [PDF]
Niu G +6 more
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Predicting and optimizing the impact responses of the airbag landing system by the simulation-based deep learning model. [PDF]
Shen X, Liu C.
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Thin-film lithium niobate terahertz differential field detectors with a bandwidth reaching 3 terahertz. [PDF]
Herter A +3 more
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Accelerated Free Energy Estimation in <i>Ab Initio</i> Path Integral Monte Carlo Simulations. [PDF]
Svensson P +6 more
europepmc +1 more source
Analytical solution for deformation of an existing tunnel induced by shield tunnelling overcrossing in complex strata. [PDF]
Huang K +6 more
europepmc +1 more source
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A New Finite-Difference Diffusion Scheme
Journal of Computational Physics, 1996The authors purpose a new second-order accurate, explicit finite difference diffusion scheme, that they call ``three-level, locally implicit'' scheme. The scheme is derived as a weighted average of the conventional forward-in-time, explicit diffusion scheme over one grid length and the same scheme over two grid lengths.
Hobson, J. M., Wood, N., Mason, P. J.
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To arrive at finite difference equations modeling magnetohydrodynamic equilibrium we use a technique that is motivated by the finite element method [3]. First we develop a second order accurate numerical quadrature formula for the Hamiltonian E based on a rectangular grid of mesh points over a unit cube of the space with coordinates s, u and v.
Frances Bauer +2 more
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Due to its relative simplicity, finite-difference (FD) analysis was historically the first numerical technique for boundary value problems in mathematical physics.
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