arXiv · 1910.11259
Hyperspectral terahertz microscopy via nonlinear ghost imaging
Abstract
We experimentally demonstrate Time-Resolved Nonlinear Ghost Imaging and its ability to perform hyperspectral imaging in difficult-to-access wavelength regions, such as the Terahertz domain. We operate by combining nonlinear quadratic sparse generation and nonlinear detection in the Fourier plane. We demonstrate that traditional time-slice approaches are prone to essential limitations in near-field imaging due to space-time coupling, which is overcome by our technique. As a proof-of-concept of our implementation, we show that we can provide experimental access to hyperspectral images completely unrecoverable through standard fixed-time methods.
Explore related subjects
Keep this discovery
Luana Olivieri, Juan S. Totero Gongora, Luke Peters, Vittorio Cecconi, Antonio Cutrona, Jacob Tunesi, Robyn Tucker, Alessia Pasquazi, Marco Peccianti. 2019-10-24. Hyperspectral terahertz microscopy via nonlinear ghost imaging. https://doi.org/10.1364/optica.381035
Cite the original work for its findings. Save a collection to share your selection of sources.