Affiliation:
1. Univ. Grenoble Alpes
2. Pusan National University
Abstract
We present an optical method that combines confocal microscopy with position modulation to perform axial tracking and topographic imaging of fluorescent surfaces. Using a remote focusing system, the confocal observation volume is oscillated in the axial direction. The resulting modulation of the detected signal is used as a feedback to precisely control the distance to an object of interest. The accuracy of this method is theoretically analyzed and the axial-locking accuracy is experimentally evaluated. Topographic imaging is demonstrated on fluorescently coated beads and fixed cells. This microscope allows for nanometric topography or tracking of dynamic fluorescent surfaces.
Funder
Korea Health Industry Development Institute
Centre National de la Recherche Scientifique
Subject
Atomic and Molecular Physics, and Optics