The resolution along the propagation direction of far field imagers can be much smaller than the wavelength by exploiting coherent interference phenomena. We demonstrate a height profile precision as low as 31 nm using wavelengths between 0.375mm and 0.5mm (corresponding to 0.6 THz–0.8 THz) by evaluating the Fabry-Pérot oscillations within surfacestructured samples. We prove the extreme precision by visualizing structures with a height of only 49 nm, corresponding to 1:7500 to 1:10000 vacuum wavelengths, a height difference usually only accessible to near field measurement techniques at this wavelength range. At the same time, the approach can determine thicknesses in the centimeter range, surpassing the dynamic range of any near field meas...
Terahertz (THz) imaging can see through otherwise opaque materials. However, because of the long wav...
We introduce the optical ruler, an electromagnetic analog of a physical ruler, for nanoscale displac...
Optical methods provide exceedingly powerful tools in science and technology for measuring, analyzin...
The resolution along the propagation direction of far field imagers can be much smaller than the wav...
Microscopes and various forms of interferometers have been used for decades in optical metrology of ...
Microscopes and various forms of interferometers have been used for decades in optical metrology of ...
We demonstrate an optical scheme for measuring the thickness of thin nanolayers with the use of ligh...
Conventional continuous-wave Terahertz imaging and thickness resolution systems often rely on the Fa...
The physical, chemical, and biological properties of nanostructures depend strongly on their geometr...
DoctorCombined with terahertz (THz) time-domain spectroscopy, THz near-field microscopy based on an ...
High Resolution Interference Microscopy (HRIM) is a technique that allows the characterization of am...
We study how nanophotonic structures can be used for determining the position of a nearby nanoscale ...
We demonstrate near-field imaging capabilities of a conical waveguide without cutoff using broadband...
Near-field imaging techniques at terahertz (THz) frequencies are severely restricted by diffraction....
Near-field imaging with terahertz (THz) waves is emerging as a powerful technique for fundamental re...
Terahertz (THz) imaging can see through otherwise opaque materials. However, because of the long wav...
We introduce the optical ruler, an electromagnetic analog of a physical ruler, for nanoscale displac...
Optical methods provide exceedingly powerful tools in science and technology for measuring, analyzin...
The resolution along the propagation direction of far field imagers can be much smaller than the wav...
Microscopes and various forms of interferometers have been used for decades in optical metrology of ...
Microscopes and various forms of interferometers have been used for decades in optical metrology of ...
We demonstrate an optical scheme for measuring the thickness of thin nanolayers with the use of ligh...
Conventional continuous-wave Terahertz imaging and thickness resolution systems often rely on the Fa...
The physical, chemical, and biological properties of nanostructures depend strongly on their geometr...
DoctorCombined with terahertz (THz) time-domain spectroscopy, THz near-field microscopy based on an ...
High Resolution Interference Microscopy (HRIM) is a technique that allows the characterization of am...
We study how nanophotonic structures can be used for determining the position of a nearby nanoscale ...
We demonstrate near-field imaging capabilities of a conical waveguide without cutoff using broadband...
Near-field imaging techniques at terahertz (THz) frequencies are severely restricted by diffraction....
Near-field imaging with terahertz (THz) waves is emerging as a powerful technique for fundamental re...
Terahertz (THz) imaging can see through otherwise opaque materials. However, because of the long wav...
We introduce the optical ruler, an electromagnetic analog of a physical ruler, for nanoscale displac...
Optical methods provide exceedingly powerful tools in science and technology for measuring, analyzin...