We present direct experimental mapping of the lateral magnetic near-field distribution in plasmonic nanoantennas using aperture scanning near-field optical microscopy (SNOM). By means of full-field simulations it is demonstrated how the coupling of the hollow-pyramid aperture probe to the nanoantenna induces an effective magnetic dipole which efficiently excites surface plasmon resonances only at lateral magnetic field maxima. This excitation in turn affects the detected light intensity enabling the visualization of the lateral magnetic near-field distribution of multiple odd and even order plasmon modes with subwavelength spatial resolution.status: publishe
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...
We present direct experimental mapping of the lateral magnetic near-field distribution in plasmonic ...
We present direct experimental mapping of the lateral magnetic near-field distribution in plasmonic...
We present direct experimental mapping of the lateral magnetic near-field distribution in plasmonic ...
We present direct experimental mapping of the lateral magnetic near-field distribution in plasmonic ...
Photonic nanomaterials, and in particular plasmonic nanoantennas, enable the manipulation of light-m...
We present direct experimental mapping of the lateral magnetic near-field distributions of plasmonic...
The design of many promising, newly emerging classes of photonic metamaterials and subwavelength con...
The interaction of light with nanoscale objects has been one of the hot topics in the field of photo...
The interaction of light with nanoscale objects has been one of the hot topics in the field of photo...
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...
Near-field imaging is a powerful tool to investigate the complex structure of light at the nanoscale...
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...
We present direct experimental mapping of the lateral magnetic near-field distribution in plasmonic ...
We present direct experimental mapping of the lateral magnetic near-field distribution in plasmonic...
We present direct experimental mapping of the lateral magnetic near-field distribution in plasmonic ...
We present direct experimental mapping of the lateral magnetic near-field distribution in plasmonic ...
Photonic nanomaterials, and in particular plasmonic nanoantennas, enable the manipulation of light-m...
We present direct experimental mapping of the lateral magnetic near-field distributions of plasmonic...
The design of many promising, newly emerging classes of photonic metamaterials and subwavelength con...
The interaction of light with nanoscale objects has been one of the hot topics in the field of photo...
The interaction of light with nanoscale objects has been one of the hot topics in the field of photo...
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...
Near-field imaging is a powerful tool to investigate the complex structure of light at the nanoscale...
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...