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Evanescent field
Calibrating Evanescent-Wave Penetration Depths for Biological TIRF Microscopy
Evanescent Wave Imaging in Optical Lithography
Superconducting Metamaterials for Waveguide Quantum Electrodynamics
7 Plasmonics
Analytical and Numerical Analysis of Low Optical Overlap Mode Evanescent Wave
Extraordinary Momentum and Spin in Evanescent Waves
Imaging with Total Internal Reflection Fluorescence Microscopy for the Cell Biologist
Theoretical Foundations
Coupling Into Waveguide Evanescent Modes with Applications in Electron Paramagnetic Resonance Jason Walter Sidabras Marquette University
Enhancing Surface Sensing Sensitivity of Metallic
Arxiv:1504.06361V2 [Physics.Optics] 20 Oct 2015
Evanescent Field-Based Optical Fiber Sensing Device for Measuring The
Optimization of Si-Based Waveguides for Evanescent-Field Sensors †
Evanescent Wave Illumination Evanescent Wave Microscopy
Evanescent Waves in the Near- and the Far Field
Hyperbolic Metamaterial Antenna for Second- Harmonic Generation Tomography
Quantitative Imaging of Rapidly Decaying Evanescent Fields Using Plasmonic Near-Field Scanning Optical Microscopy
Manipulation of Surface Plasmon Resonance in Metal and Alloy Thin If Lms Using Dielectric Media Benjamin Dubray Hall Rose-Hulman Institute of Technology
Top View
Nano-Optics of Surface Plasmon Polaritons Anatoly V
Evanescent Fields Inside a Cut-Off Waveguide As Near Fields
Enhanced Evanescent Field Spectroscopy at Waveguide Surfaces Using High Index Nano and Near-Nano Layers
Direct Measurement of the Evanescent Field Profile Produced by Objective-Based Total Internal Reflection Fluorescence
Far-Field Superlens - Optical Nanoscope" (2007)
Waveguide Evanescent Field Fluorescence and Scattering
Evanescent Field Absorption Spectroscopy on Poly(Dimethylsiloxane) Single-Mode Rib Waveguide Integrated with Microfluidic System J.S
Mie Scattering and Optical Forces from Evanescent Fields: a Complex-Angle Approach
Thz Surface Wave Collapse on Coated Metal Surfaces
'Growing' Evanescent Fields of Double-Negative Metamaterial Lenses Using Their Circuit Equivalence
Total Internal Reflection Fluorescence
Chapter 4 Material Boundaries
Optical Metamaterials: Design, Characterization and Applications
Fiber Evanescent Field Technology
Evanescent Field Characterisation of Tapered Optical Fibre Sensors in Liquid Environments Using Near-Field Scanning Optical Microscopy
Super-Resolution Wide-Field Optical Microscopy by Use of Evanescent Standing Waves by Euiheon Chung M.S
A Metamaterial-Inspired Approach to Mitigating Radio Frequency Blackout When a Plasma Forms Around a Reentry Vehicle
Surface Plasmon Polaritons (Spps) - Introduction and Basic Properties
COVERED IMAGE of SUPERLENS Yuan Zhang1, * and Michael A
Surface Plasmon Resonance
Far-Field Optical Superlens Vol
Hyperlenses and Metalenses for Far-Field Super-Resolution Imaging
Total Internal Reflection Fluorescence (TIRF)
Near-Field Examination of Perovskite-Based Superlenses and Superlens-Enhanced Probe-Object Coupling
Controlling and Manipulation of Red Blood Cells by Evanescent Waves
Indefinite Metamaterials for Optical Applications
EVANESCENT WAVE ACCELERATION of ELECTRONS from O.2C to O.95C
Circular and Near-Circular Polarization States of Evanescent Monochromatic Light Fields in Otalt Internal Reflection
Rapid Growth of Evanescent Wave by a Silver Superlens
Direct Measurement of Evanescent Field Penetration to Optimize High Resolution Surface Plasmon Resonance Imaging of Single Cells
An Investigation of Evanescent Wave Gas Sensing Using Zirconium Fluoride Optical Fibre
Hyperbolic Metamaterials for Super-Resolution Imaging and Deep Sub-Wavelength Cavities by Jun Suk Rho a Dissertation Submitted I
Simulation of Fundamental Mode Evanescent Fields in a Hom Damping Waveguide and Comparison with Measurements* C.C
Modelling of Evanescent Field Scattering †
Extraordinary Momentum and Spin in Evanescent Waves
Polarized Evanescent Waves Reveal Trochoidal Dichroism
The Chimaerical Quest for the Optical Plasmonic Superlens George
Theory of Optical Imaging Beyond the Diffraction Limit with a Far-Field
Development of Fibre Optic Evanescent-Wave Fluorescence-Based Sensors