We theoretically derive the electric field distribution of an astigmatic Gaussian laser beam after it is focused through a high-aperture objective. We show that astigmatism values that are hard to detect in the collimated laser beam can have a large effect after diffraction-limited focusing. Such astigmatic beams may be frequently encountered in fluorescence correlation measurements and in laser-scanning confocal microscopy. We present experimental measurements of the excitation intensity distribution measured by 3D scanning of single fluorescent molecules immobilized on a glass surface. (c) 2005 Optical Society of America
AbstractAzimuthal beam scanning makes evanescent-wave (EW) excitation isotropic, thereby producing t...
For decades, the power of far-field fluorescence microscopy has been hampered by the diffraction res...
We consider the effect of planar dielectric interfaces (e.g., solid/liquid) on the fluorescence emis...
orientation, single molecule. Summary Single dye molecules are used as local probes to map the spati...
We report a method for characterizing the focussing laser beam exiting the objective in a laser scan...
In trying to manipulate the intensity distribution of a focused field, one typically uses amplitude ...
Gaussian beams generated within astigmatic resonators are themselves astigmatic, having wavefront cu...
In trying to manipulate the intensity distribution of a focused field, one typically uses amplitude ...
Thesis (M.S.)--University of Rochester. College of Engineering and Applied Science. Institute of Opt...
The focal field distribution of tightly focused laser beams in turbid media is sensitive to optical ...
We study the effect of frequency detuning on light focused through turbid media. By shaping the wave...
Light sheet microscopy, with the technique developed nearly a century ago and the first application ...
We report on the generation of various hole-centered beams in the focal region of a lens and investi...
Light sheet microscopy facilitates rapid, high contrast, volumetric imaging with minimal sample expo...
Arbeit an der Bibliothek noch nicht eingelangt - Daten nicht geprüftAbweichender Titel nach Übersetz...
AbstractAzimuthal beam scanning makes evanescent-wave (EW) excitation isotropic, thereby producing t...
For decades, the power of far-field fluorescence microscopy has been hampered by the diffraction res...
We consider the effect of planar dielectric interfaces (e.g., solid/liquid) on the fluorescence emis...
orientation, single molecule. Summary Single dye molecules are used as local probes to map the spati...
We report a method for characterizing the focussing laser beam exiting the objective in a laser scan...
In trying to manipulate the intensity distribution of a focused field, one typically uses amplitude ...
Gaussian beams generated within astigmatic resonators are themselves astigmatic, having wavefront cu...
In trying to manipulate the intensity distribution of a focused field, one typically uses amplitude ...
Thesis (M.S.)--University of Rochester. College of Engineering and Applied Science. Institute of Opt...
The focal field distribution of tightly focused laser beams in turbid media is sensitive to optical ...
We study the effect of frequency detuning on light focused through turbid media. By shaping the wave...
Light sheet microscopy, with the technique developed nearly a century ago and the first application ...
We report on the generation of various hole-centered beams in the focal region of a lens and investi...
Light sheet microscopy facilitates rapid, high contrast, volumetric imaging with minimal sample expo...
Arbeit an der Bibliothek noch nicht eingelangt - Daten nicht geprüftAbweichender Titel nach Übersetz...
AbstractAzimuthal beam scanning makes evanescent-wave (EW) excitation isotropic, thereby producing t...
For decades, the power of far-field fluorescence microscopy has been hampered by the diffraction res...
We consider the effect of planar dielectric interfaces (e.g., solid/liquid) on the fluorescence emis...