Related Experiment Video
Updated: Aug 16, 2026

Construction and Characterization of External Cavity Diode Lasers for Atomic Physics
Published on: April 24, 2014
Mode-locking external-cavity laser-diode sensor for displacement measurements of technical surfaces
Jürgen Czarske1, Jasper Möbius, Karsten Moldenhauer
1Chair for Measurement and Testing Techniques, Department of Electrical Engineering and Information Technology, Technical University of Dresden, D-01062 Dresden, Germany. czarske@iee.et.tu-dresden.de
Abstract:
A novel laser sensor for position measurements of technical solid-state surfaces is proposed. An external Fabry-Perot laser cavity is assembled by use of an antireflection-coated laser diode together with the technical surface. Mode locking results from pumping the laser diode synchronously to the mode spacing of the cavity. The laser cavity length, i.e., the distance to the measurement object, is determined by evaluation of the modulation transfer function of the cavity by means of a phase-locked loop. The mode-locking external-cavity laser sensor incorporates a resonance effect that results in highly resolving position and displacement measurements. More than a factor-of-10 higher resolution than with conventional nonresonant sensing principles is achieved. Results of the displacement measurements of various technical surfaces are reported. Experimental and theoretical investigations are in good agreement.

