In this review we describe fundamentals of scanning near-field optical microscopy with aperture probes. After the discussion of instrumentation and probe fabrication, aspects of light propagation in metal-coated, tapered optical fibers are considered. This includes transmission properties and field distributions in the vicinity of subwavelength apertures. Furthermore, the near-field optical image formation mechanism is analyzed with special emphasis on potential sources of artifacts. To underline the prospects of the technique, selected applications including amplitude and phase contrast imaging, fluorescence imaging, and Raman spectroscopy, as well as near-field optical desorption, are presented. These examples demonstrate that scanning ne...
International audienceSince the description of diffraction from the seventeenth century and the deve...
We describe an apertureless near field microscope for imaging fluorescent samples. Optical contrast ...
Haumann C, Pelargus C, Frey HG, et al. Stand-alone device for the electrolytic fabrication of scanni...
In this review we describe fundamentals of scanning near-field optical microscopy with aperture prob...
Near-field scanning optical microscopy (NSOM) is one of the most recent scanning probe techniques. I...
This chapter reports a broad overview of near-field optical probes. They represent the key componen...
This chapter reports a broad overview of near-field optical probes. They represent the key componen...
Apertureless scanning near-field optical microscopy is a valuable tool for characterization of chemi...
This chapter reports a broad overview of near-field optical probes. They represent the key componen...
Scanning near-field optical microscopy (SNOM) is an optical microscopy whose resolution is not bound...
Scanning Near-field Optical Microscopy (SNOM) is a powerful and widely-used method in nano- and micr...
Scanning Near-field Optical Microscopy (SNOM) is a powerful and widely-used method in nano- and micr...
Scanning Near-field Optical Microscopy (SNOM) is a powerful and widely-used method in nano- and micr...
Apertureless scanning near-field optical microscopy is a valuable tool for characterization of chemi...
Heinzelmann H, Lacoste T, Huser T, Güntherodt HJ, Hecht B, Pohl DW. Instrumental developments and re...
International audienceSince the description of diffraction from the seventeenth century and the deve...
We describe an apertureless near field microscope for imaging fluorescent samples. Optical contrast ...
Haumann C, Pelargus C, Frey HG, et al. Stand-alone device for the electrolytic fabrication of scanni...
In this review we describe fundamentals of scanning near-field optical microscopy with aperture prob...
Near-field scanning optical microscopy (NSOM) is one of the most recent scanning probe techniques. I...
This chapter reports a broad overview of near-field optical probes. They represent the key componen...
This chapter reports a broad overview of near-field optical probes. They represent the key componen...
Apertureless scanning near-field optical microscopy is a valuable tool for characterization of chemi...
This chapter reports a broad overview of near-field optical probes. They represent the key componen...
Scanning near-field optical microscopy (SNOM) is an optical microscopy whose resolution is not bound...
Scanning Near-field Optical Microscopy (SNOM) is a powerful and widely-used method in nano- and micr...
Scanning Near-field Optical Microscopy (SNOM) is a powerful and widely-used method in nano- and micr...
Scanning Near-field Optical Microscopy (SNOM) is a powerful and widely-used method in nano- and micr...
Apertureless scanning near-field optical microscopy is a valuable tool for characterization of chemi...
Heinzelmann H, Lacoste T, Huser T, Güntherodt HJ, Hecht B, Pohl DW. Instrumental developments and re...
International audienceSince the description of diffraction from the seventeenth century and the deve...
We describe an apertureless near field microscope for imaging fluorescent samples. Optical contrast ...
Haumann C, Pelargus C, Frey HG, et al. Stand-alone device for the electrolytic fabrication of scanni...