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Beilstein J. Nanotechnol. 2019, 10, 922–929, doi:10.3762/bjnano.10.93
Figure 1: X-ray tomographic images showing 3D rendered volumes of white Bombyx mori silk fibers at 3.15 μm pi...
Figure 2: (a) Wide-angle 2D X-ray diffraction of a bundle of white Bombyx mori silk fibers. The inset shows a...
Figure 3: (a) A series of optical images taken at different voltages of a liquid crystal (LC) retarder (schem...
Figure 4: (a) Far-field optical image of longitudinal slices of white silk embedded in an epoxy sheet. The in...
Figure 5: Scattering near-field optical microscopy (SNOM) measurements of the nano-FTIR reflectance (a) and a...
Figure 6: (a) Single-point absorbance spectra of thin silk samples on BaF2 collected at different angles θ be...
Beilstein J. Nanotechnol. 2018, 9, 2609–2617, doi:10.3762/bjnano.9.242
Figure 1: (a) Schematics of experiment showing polarizations of the pre-pulse E1 and the main pulse E2 in the...
Figure 2: X-ray intensities from (a) a water film and (b) a film of a colloidal suspension of gold nanosphere...
Figure 3: X-ray intensity at different positions of the water film (a) and the gold nanosphere colloidal solu...
Figure 4: Position of X-ray maximum generation (a) and its intensity (b) for distilled water films at short e...
Figure 5: FDTD simulations of light-field enhancement under the conditions of the experiment: angle of incide...
Beilstein J. Nanotechnol. 2013, 4, 534–541, doi:10.3762/bjnano.4.62
Figure 1: Illustration of the nano-well fabrication by (a) dry plasma etching of Au-film and PMMA mask, which...
Figure 2: (a) Transmission T and reflectivity R coefficients for different geometries of the hole/well-array ...
Figure 3: Experimentally measured extinction of the nano-well substrate for hole diameters of 70, 90, and 120...
Figure 4: Light intensity distribution in the xz-plane simulated by 3D-FDTD at the two laser wavelengths (a,c...
Figure 5: Arrow plot of the trapping force for plane-wave illumination in medium-to-substrate direction (as i...
Figure 6: Arrow plot of the trapping force as in Figure 5 at 760 nm wavelength for a 100-nm diameter bead in (a) wate...
Figure 7: Force evaluation in the neighborhood of the central trapping spot (0,z0) at 760 nm wavelength for a...