arXiv · 1411.6910
Towards a FPGA-controlled deep phase modulation interferometer
Abstract
Deep phase modulation interferometry was proposed as a method to enhance homodyne interferometers to work over many fringes. In this scheme, a sinusoidal phase modulation is applied in one arm while the demodulation takes place as a post-processing step. In this contribution we report on the development to implement this scheme in a fiber coupled interferometer controlled by means of a FPGA, which includes a LEON3 soft-core processor. The latter acts as a CPU and executes a custom made application to communicate with a host PC. In contrast to usual FPGA-based designs, this implementation allows a real-time fine tuning of the parameters involved in the setup, from the control to the post-processing parameters.
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M. Terán, V. Martín, L. l. Gesa, I. Mateos, F. Gibert, N. Karnesis, J. Ramos-Castro, T. S. Schwarze, O. Gerberding, G. Heinzel, F. Guzmán, M. Nofrarias. 2014-11-25. Towards a FPGA-controlled deep phase modulation interferometer. https://doi.org/10.1088/1742-6596%2F610%2F1%2F012042
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