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We demonstrate experimentally for the first time quantum-inspired spectral domain Intensity Optical Tomography. Our results illustrate the benefits of the technique both in terms of resolution improvement and dispersion cancelation.
We report the first experimental measurements of second-order coherence functions of supercontinuum light. The method is based on measuring separately the quasi-coherent and quasi-stationary contributions using a combination of interferometric and nonlinear gating techniques.
We present a compact, broadband source with tunable repetition rate working in the visible/near-infrared for scanning white-light interferometry. Three-dimensional characterization of MEMS with 7 micron axial resolution is demonstrated.
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