Abstract
Optics experiments critically require the stable and accurate locking of relative phases between light beams or the stabilization of Fabry-Perot cavity lengths. Here, we present a simple and inexpensive technique based on a stand-alone microcontroller unit to perform such tasks. Easily programmed in C language, this reconfigurable digital locking system also enables automatic relocking and sequential functioning. Different algorithms are detailed and applied to fringe locking and to low- and high-finesse optical cavity stabilization, without the need of external modulations or error signals. This technique can readily replace a number of analog locking systems advantageously in a variety of optical experiments.
| Original language | English |
|---|---|
| Article number | 123112 |
| Journal | Review of Scientific Instruments |
| Volume | 85 |
| Issue number | 12 |
| DOIs | |
| State | Published - 18 Oct 2014 |