13 Super-Resolution Microscopy Techniques Based …
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Fig. 13.13 a Experimental image of radial light scattering by random defects located inside the
cutoff region of the waveguide. b Image cross section along the blue line
Fig. 13.14 Field decay in
the radial direction is
consistent with photon
tunneling
Thus, suggested super-resolution microscopy scheme appears to be viable.
13.5 Microscopy Techniques Based on 2D Transformation
Optics
13.5.1 Microdroplet-Based Transformation Optics
Current high interest in electromagnetic metamaterials has been motivated by recent
work on superlenses, cloaking and transformation optics [3, 22, 23]. This interest
has been followed by considerable efforts aimed at introduction of metamaterial
329
Fig. 13.13 a Experimental image of radial light scattering by random defects located inside the
cutoff region of the waveguide. b Image cross section along the blue line
Fig. 13.14 Field decay in
the radial direction is
consistent with photon
tunneling
Thus, suggested super-resolution microscopy scheme appears to be viable.
13.5 Microscopy Techniques Based on 2D Transformation
Optics
13.5.1 Microdroplet-Based Transformation Optics
Current high interest in electromagnetic metamaterials has been motivated by recent
work on superlenses, cloaking and transformation optics [3, 22, 23]. This interest
has been followed by considerable efforts aimed at introduction of metamaterial
