Suchergebnisse - "generating interference patterns"
-
1
Autoren: et al.
Schlagwörter: Cell Biology, Genetics, Neuroscience, Physiology, Immunology, Developmental Biology, Space Science, Biological Sciences not elsewhere classified, single galvanometric mirror, one moving part, illumination power efficiency, 2 os cells, interference patterns controlled, generating interference patterns, high power efficiency, different illumination patterns, 3d sim achromatically, 2d sim imaging, interference patterns, 3d sim, different orientations, performing high, stained u, phases onto, path interferometer, optical microscopy, new way, major challenge, fluorescent nanoparticles, diffraction limit
-
2
Autoren: et al.
Schlagwörter: Cell Biology, Genetics, Neuroscience, Physiology, Immunology, Developmental Biology, Space Science, Biological Sciences not elsewhere classified, single galvanometric mirror, one moving part, illumination power efficiency, 2 os cells, interference patterns controlled, generating interference patterns, high power efficiency, different illumination patterns, 3d sim achromatically, 2d sim imaging, interference patterns, 3d sim, different orientations, performing high, stained u, phases onto, path interferometer, optical microscopy, new way, major challenge, fluorescent nanoparticles, diffraction limit
-
3
Autoren: et al.
Schlagwörter: Cell Biology, Genetics, Neuroscience, Physiology, Immunology, Developmental Biology, Space Science, Biological Sciences not elsewhere classified, single galvanometric mirror, one moving part, illumination power efficiency, 2 os cells, interference patterns controlled, generating interference patterns, high power efficiency, different illumination patterns, 3d sim achromatically, 2d sim imaging, interference patterns, 3d sim, different orientations, performing high, stained u, phases onto, path interferometer, optical microscopy, new way, major challenge, fluorescent nanoparticles, diffraction limit
Verfügbarkeit: https://doi.org/10.1021/acsphotonics.5c00516.s001
-
4
Autoren: et al.
Schlagwörter: Cell Biology, Genetics, Neuroscience, Physiology, Immunology, Developmental Biology, Space Science, Biological Sciences not elsewhere classified, single galvanometric mirror, one moving part, illumination power efficiency, 2 os cells, interference patterns controlled, generating interference patterns, high power efficiency, different illumination patterns, 3d sim achromatically, 2d sim imaging, interference patterns, 3d sim, different orientations, performing high, stained u, phases onto, path interferometer, optical microscopy, new way, major challenge, fluorescent nanoparticles, diffraction limit
Nájsť tento článok vo Web of Science