Coupling of light to the free electrons at metallic surfaces allows the confinement of electric fields to subwavelength dimensions, far below the optical diffraction limit. While this is routinely used to manipulate light at the nanoscale, in electro-optic devices and enhanced spectroscopic techniques,− no characterization technique for imaging the underlying nanoscopic electromagnetic fields exists, which does not perturb the field, or employ complex electron beam imaging., Here, we demonstrate the direct visualization of electromagnetic fields on patterned metallic substrates at nanometer resolution, exploiting a strong “autonomous” fluorescence-blinking behavior of single molecules within the confined fields allowing their localization. ...
Light is a union of electric and magnetic fields, and nowhere is the complex relationship between th...
Light is a union of electric and magnetic fields, and nowhere is the complex relationship between th...
Light is a union of electric and magnetic fields, and nowhere is the complex relationship between th...
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...
ABSTRACT: Coupling of light to the free electrons at metallic surfaces allows the confinement of ele...
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...
As the need to control and manipulate light on the nanoscale increases, intense expectations are bei...
International audienceNanoapertures milled in opaque metallic films offer a simple and robust photon...
International audienceNanoapertures milled in opaque metallic films offer a simple and robust photon...
International audienceNanoapertures milled in opaque metallic films offer a simple and robust photon...
We demonstrate a far-field single molecule super-resolution method that maps plasmonic near-fields. ...
In the vicinity of metallic nanostructures, absorption and emission rates of optical emitters can be...
Light is a union of electric and magnetic fields, and nowhere is the complex relationship between th...
Light is a union of electric and magnetic fields, and nowhere is the complex relationship between th...
Light is a union of electric and magnetic fields, and nowhere is the complex relationship between th...
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...
ABSTRACT: Coupling of light to the free electrons at metallic surfaces allows the confinement of ele...
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...
As the need to control and manipulate light on the nanoscale increases, intense expectations are bei...
International audienceNanoapertures milled in opaque metallic films offer a simple and robust photon...
International audienceNanoapertures milled in opaque metallic films offer a simple and robust photon...
International audienceNanoapertures milled in opaque metallic films offer a simple and robust photon...
We demonstrate a far-field single molecule super-resolution method that maps plasmonic near-fields. ...
In the vicinity of metallic nanostructures, absorption and emission rates of optical emitters can be...
Light is a union of electric and magnetic fields, and nowhere is the complex relationship between th...
Light is a union of electric and magnetic fields, and nowhere is the complex relationship between th...
Light is a union of electric and magnetic fields, and nowhere is the complex relationship between th...