Photoemission Electron Microscopy (PEEM) is a versatile tool that relies on the photoelectric effect to produce high-resolution images. Pulse lasers allow for multi-photon PEEM where multiple photons are required excite a single electron. This non-linear process can directly image the near field region of electromagnetic fields in materials. We use this ability here to analyze wave propagation in a linear dielectric waveguide with wavelengths of 410nm and 780nm. The propagation constant of the waveguide can be extracted from the interference pattern created by the coupled and incident light and shows distinct polarization dependence. The electromagnetic field interaction at the boundaries can then be deduced which is essential to understand...
We develop a systematic approach for simultaneous extraction of the dispersion relations and profile...
International audienceWaveguiding of surface plasmon polaritons by dielectric-loaded metal structure...
International audienceThe excitation of surface plasmon-polariton (SPP) waveguide modes in 500-nm-wi...
Photoemission Electron Microscopy (PEEM) is a versatile tool that relies on the photoelectric effect...
Photoemission Electron Microscopy (PEEM) is a versatile tool that relies on the photoelectric effect...
We report here, for the first time, the direct observation polarization dependent phase shifts in th...
Using photoemission electron microscopy (PEEM) we present a comparative analysis of the wavelength d...
The Photoemission electron microscopes (PEEM) is a powerful tool capable of synchronously imaging wa...
We report the observation of optical near fields in a photonic waveguide of conductive indium tin ox...
We present an experimental study of the coupling of light from a waveguide into a submicron size opt...
Multimode waveguiding in the visible and near-ultraviolet spectral regime is observed and characteri...
Abstract: Measurement of spectral interference with a near-field scanning optical microscope is used...
The design of noble-metal plasmonic devices and nanocircuitry requires a fundamental understanding a...
Using femtosecond nonlinear photoemission electron microscopy (PEEM) we provide a detailed character...
Photoemission electron microscopy (PEEM) is an imaging method which uses electrons excited through t...
We develop a systematic approach for simultaneous extraction of the dispersion relations and profile...
International audienceWaveguiding of surface plasmon polaritons by dielectric-loaded metal structure...
International audienceThe excitation of surface plasmon-polariton (SPP) waveguide modes in 500-nm-wi...
Photoemission Electron Microscopy (PEEM) is a versatile tool that relies on the photoelectric effect...
Photoemission Electron Microscopy (PEEM) is a versatile tool that relies on the photoelectric effect...
We report here, for the first time, the direct observation polarization dependent phase shifts in th...
Using photoemission electron microscopy (PEEM) we present a comparative analysis of the wavelength d...
The Photoemission electron microscopes (PEEM) is a powerful tool capable of synchronously imaging wa...
We report the observation of optical near fields in a photonic waveguide of conductive indium tin ox...
We present an experimental study of the coupling of light from a waveguide into a submicron size opt...
Multimode waveguiding in the visible and near-ultraviolet spectral regime is observed and characteri...
Abstract: Measurement of spectral interference with a near-field scanning optical microscope is used...
The design of noble-metal plasmonic devices and nanocircuitry requires a fundamental understanding a...
Using femtosecond nonlinear photoemission electron microscopy (PEEM) we provide a detailed character...
Photoemission electron microscopy (PEEM) is an imaging method which uses electrons excited through t...
We develop a systematic approach for simultaneous extraction of the dispersion relations and profile...
International audienceWaveguiding of surface plasmon polaritons by dielectric-loaded metal structure...
International audienceThe excitation of surface plasmon-polariton (SPP) waveguide modes in 500-nm-wi...