propagation

A new optical inversion strategy to unscramble light propagation through multimode optical fibers

A new optical inversion strategy to unscramble light propagation through multimode optical fibers

See through the ideal MMFs. From left to right, the panels in each row display digital simulations of the field/object/scene to be imaged (leftmost panel); the image formed in perfect MMF inversion, that is to say including the spatial filtering effects due to the limited modal capacity of the fiber, but not including any mode …

A new optical inversion strategy to unscramble light propagation through multimode optical fibers Read More »

A new optical inversion strategy to unscramble light propagation through multimode optical fibers

A new optical inversion strategy to unscramble light propagation through multimode optical fibers

See through the ideal MMFs. From left to right, the panels in each row display digital simulations of the field/object/scene to be imaged (leftmost panel); the image formed in perfect MMF inversion, that is to say including the spatial filtering effects due to the limited modal capacity of the fiber, but not including any mode …

A new optical inversion strategy to unscramble light propagation through multimode optical fibers Read More »

New optical inversion strategy to descramble light propagation through multimode optical fibers

New optical inversion strategy to descramble light propagation through multimode optical fibers

Multimode optical fibers (MMFs) are very thin strands of glass that are ubiquitous in light guiding applications. Their development has gone hand in hand with the enormous growth in the rapid transmission of information across the world. The small footprint of MMFs also makes them attractive candidates for next-generation microendoscopes, to provide optical microscopy deep …

New optical inversion strategy to descramble light propagation through multimode optical fibers Read More »