Precise knowledge of the local density of optical states (LDOS) is fundamental to understanding nanophotonic systems and devices. Complete LDOS mapping requires resolution in energy, momentum, and space, and hence a versatile measurement approach capable of providing simultaneous access to the LDOS components is highly desirable. Here, we explore a modality of cathodoluminescence spectroscopy able to resolve, in single acquisitions, the dispersion in energy and momentum of the radiative LDOS. We perform measurements on a titanium nitride diffraction grating, bulk molybdenum disulfide, and silicon to demonstrate that the technique can probe and disentangle the dispersion of coherent and incoherent cathodoluminescence signals. The approach pr...
The increasing demand for new opto-electronics devices such as solar cells, laser diodes (LD), and h...
We propose a design concept for tailoring the local density of optical states (LDOS) in dielectric n...
Surface plasmons are elementary excitations of the collective and coherent oscillations of conductiv...
Precise knowledge of the local density of optical states (LDOS) is fundamental to understanding nano...
Free-electron-based spectroscopies can reveal the nanoscale optical properties of semiconductor mate...
Nanophotonics, the study of light at the nanoscale, is a vibrant field of research with a wide varie...
Following the lifespan of optical excitations from their creation to decay into photons is crucial i...
Following the lifespan of optical excitations from their creation to decay into photons is crucial i...
We use cathodoluminescence (CL) spectroscopy in a transmission electron microscope to probe the radi...
Nanophotonics has greatly benefited from the unique ability of surface plasmons to confine optical mo...
The surface plasmon polariton (SPP) field intensity in the vicinity of gratings patterned in an othe...
Nanowires have been a top-five focused research topics in physics,and stimulated intensive interests...
8 pags, 8 figsThe possibility has recently been reported of using spatially resolved electron energy...
Understanding how light-matter interactions can be enhanced is the central theme of much of solid s...
Plasmonic nanostructures and -devices are rapidly transforming light manipulation technology by allo...
The increasing demand for new opto-electronics devices such as solar cells, laser diodes (LD), and h...
We propose a design concept for tailoring the local density of optical states (LDOS) in dielectric n...
Surface plasmons are elementary excitations of the collective and coherent oscillations of conductiv...
Precise knowledge of the local density of optical states (LDOS) is fundamental to understanding nano...
Free-electron-based spectroscopies can reveal the nanoscale optical properties of semiconductor mate...
Nanophotonics, the study of light at the nanoscale, is a vibrant field of research with a wide varie...
Following the lifespan of optical excitations from their creation to decay into photons is crucial i...
Following the lifespan of optical excitations from their creation to decay into photons is crucial i...
We use cathodoluminescence (CL) spectroscopy in a transmission electron microscope to probe the radi...
Nanophotonics has greatly benefited from the unique ability of surface plasmons to confine optical mo...
The surface plasmon polariton (SPP) field intensity in the vicinity of gratings patterned in an othe...
Nanowires have been a top-five focused research topics in physics,and stimulated intensive interests...
8 pags, 8 figsThe possibility has recently been reported of using spatially resolved electron energy...
Understanding how light-matter interactions can be enhanced is the central theme of much of solid s...
Plasmonic nanostructures and -devices are rapidly transforming light manipulation technology by allo...
The increasing demand for new opto-electronics devices such as solar cells, laser diodes (LD), and h...
We propose a design concept for tailoring the local density of optical states (LDOS) in dielectric n...
Surface plasmons are elementary excitations of the collective and coherent oscillations of conductiv...