Electric fields of nanoscale particles are fundamental to our understanding of nanoplasmonics and nanophotonics. Success has been made in developing methods to probe the effect of their presence, but it remains difficult to directly image optically induced electric fields at the nanoscale and especially when ensembles of particles are involved. Here, using ultrafast electron microscopy, we report the space-time visualization of photon-induced electric fields for ensembles of silver nanoparticles having different sizes, shapes, and separations. The high-field-of-view measurements enable parallel processing of many particles in the ensemble with high throughput of information. Directly in the image, the evanescent fields are observed and visu...
Coupling of light to the free electrons at metallic surfaces allows the confinement of electric fiel...
Coupling of light to the free electrons at metallic surfaces allows the confinement of electric fiel...
Coupling of light to the free electrons at metallic surfaces allows the confinement of electric fiel...
Electric fields of nanoscale particles are fundamental to our understanding of nanoplasmonics and na...
Electric fields of nanoscale particles are fundamental to our understanding of nanoplasmonics and na...
In materials science and biology, optical near-field microscopies enable spatial resolutions beyond ...
In materials science and biology, optical near-field microscopies enable spatial resolutions beyond ...
Particle interactions are fundamental to our understanding of nanomaterials and biological assemblie...
Surface plasmon polaritons can confine electromagnetic fields in subwavelength spaces and are of int...
Particle interactions are fundamental to our understanding of nanomaterials and biological assemblie...
Particle interactions are fundamental to our understanding of nanomaterials and biological assemblie...
Surface plasmon polaritons can confine electromagnetic fields in subwavelength spaces and are of int...
Particle interactions are fundamental to our understanding of nanomaterials and biological assemblie...
Both photons and electrons may be used to excite surface plasmon polaritons, the collective charge d...
Both photons and electrons may be used to excite surface plasmon polaritons, the collective charge d...
Coupling of light to the free electrons at metallic surfaces allows the confinement of electric fiel...
Coupling of light to the free electrons at metallic surfaces allows the confinement of electric fiel...
Coupling of light to the free electrons at metallic surfaces allows the confinement of electric fiel...
Electric fields of nanoscale particles are fundamental to our understanding of nanoplasmonics and na...
Electric fields of nanoscale particles are fundamental to our understanding of nanoplasmonics and na...
In materials science and biology, optical near-field microscopies enable spatial resolutions beyond ...
In materials science and biology, optical near-field microscopies enable spatial resolutions beyond ...
Particle interactions are fundamental to our understanding of nanomaterials and biological assemblie...
Surface plasmon polaritons can confine electromagnetic fields in subwavelength spaces and are of int...
Particle interactions are fundamental to our understanding of nanomaterials and biological assemblie...
Particle interactions are fundamental to our understanding of nanomaterials and biological assemblie...
Surface plasmon polaritons can confine electromagnetic fields in subwavelength spaces and are of int...
Particle interactions are fundamental to our understanding of nanomaterials and biological assemblie...
Both photons and electrons may be used to excite surface plasmon polaritons, the collective charge d...
Both photons and electrons may be used to excite surface plasmon polaritons, the collective charge d...
Coupling of light to the free electrons at metallic surfaces allows the confinement of electric fiel...
Coupling of light to the free electrons at metallic surfaces allows the confinement of electric fiel...
Coupling of light to the free electrons at metallic surfaces allows the confinement of electric fiel...