Control of light–matter interactions at the nanoscale has advanced fields such as quantum optics1, photovoltaics2 and telecommunications3. These advances are driven by an improved understanding of the nanoscale behaviour of light, enabled by direct observations of the local electric fields near photonic nanostructures4, 5, 6. With the advent of metamaterials that respond to the magnetic component of light7, 8, schemes have been developed to measure the nanoscale magnetic field9, 10, 11, 12. However, these structures interact not only with the magnetic field, but also with the electric field of light. Here, we demonstrate the essential simultaneous detection of both electric and magnetic fields with subwavelength resolution. By explaining ou...
Tailoring the electromagnetic field at the nanoscale has led to artificial materials exhibiting fasc...
Tailoring the electromagnetic field at the nanoscale has led to artificial materials exhibiting fasc...
Light–matter interactions are often considered to be mediated by the electric component of light onl...
Control of light–matter interactions at the nanoscale has advanced fields such as quantum optics1, p...
In nano-optics, light is controlled at length scales smaller than the wavelength. Consequently, inve...
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...
Light is a union of electric and magnetic fields, and nowhere is the complex relationship between th...
Tailoring the electromagnetic field at the nanoscale has led to artificial materials exhibiting fasc...
Nanophotonic structures, which offer a sub-wavelength control over light and nearby emitters, promis...
Nanophotonic structures, which offer a sub-wavelength control over light and nearby emitters, promis...
Tailoring the electromagnetic field at the nanoscale has led to artificial materials exhibiting fasc...
Tailoring the electromagnetic field at the nanoscale has led to artificial materials exhibiting fasc...
Tailoring the electromagnetic field at the nanoscale has led to artificial materials exhibiting fasc...
Tailoring the electromagnetic field at the nanoscale has led to artificial materials exhibiting fasc...
Tailoring the electromagnetic field at the nanoscale has led to artificial materials exhibiting fasc...
Light–matter interactions are often considered to be mediated by the electric component of light onl...
Control of light–matter interactions at the nanoscale has advanced fields such as quantum optics1, p...
In nano-optics, light is controlled at length scales smaller than the wavelength. Consequently, inve...
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...
Light is a union of electric and magnetic fields, and nowhere is the complex relationship between th...
Tailoring the electromagnetic field at the nanoscale has led to artificial materials exhibiting fasc...
Nanophotonic structures, which offer a sub-wavelength control over light and nearby emitters, promis...
Nanophotonic structures, which offer a sub-wavelength control over light and nearby emitters, promis...
Tailoring the electromagnetic field at the nanoscale has led to artificial materials exhibiting fasc...
Tailoring the electromagnetic field at the nanoscale has led to artificial materials exhibiting fasc...
Tailoring the electromagnetic field at the nanoscale has led to artificial materials exhibiting fasc...
Tailoring the electromagnetic field at the nanoscale has led to artificial materials exhibiting fasc...
Tailoring the electromagnetic field at the nanoscale has led to artificial materials exhibiting fasc...
Light–matter interactions are often considered to be mediated by the electric component of light onl...