Optical Field Back Propagation

Optical field back propagation is a computational technique that reconstructs an optical wavefield at an earlier or different plane from measurements or simulations at a known plane. It applies the inverse of a propagation model, such as the Fresnel or angular spectrum method, to reverse the phase evolution imposed by diffraction while preserving the field’s amplitude and phase information. In engineering, back propagation supports digital holography, computational microscopy, beam shaping, and free-space optical system design. By estimating how light originated or would appear elsewhere, it helps evaluate focusing performance, correct propagation effects, and improve image or wavefront reconstruction.

Optical Field Back Propagation - Related Videos

Research

JoVE Journal - Engineering
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Fiber Optic Distributed Sensors for High-resolution Temperature Field Mapping

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Cited by 8 •

2016

We demonstrate use of a fiber optic distributed sensor for mapping the temperature field of mixing air jets. The Rayleigh scattering-based sensor generates thousands of data points along a single fiber to provide exceptional spatial resolution that is unattainable with traditional sensors such as thermocouples.

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JoVE Journal - Engineering
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Evanescent Field Based Photoacoustics: Optical Property Evaluation at Surfaces

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Cited by 2 •

2016

Here we present a protocol to estimate material and surface optical properties using the photoacoustic effect combined with total internal reflection. This technique evanescent field-based photoacoustics can be used to create a photoacoustic metrology system to estimate materials' thicknesses, bulk and thin film refractive indices, and explore their optical properties.

Research

JoVE Journal - Bioengineering

A Cardiac Microphysiological System for Studying Ca2+ Propagation via Non-genetic Optical Stimulation

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Cited by 3 •

2025

Using light to control cardiac cells and tissue enables non-contact stimulation, thereby preserving the natural state and function of the cells, making it a valuable approach for both basic research and therapeutic applications.

Development of Whispering Gallery Mode Polymeric Micro-optical Electric Field Sensors

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Cited by 7 •

2013

A high-sensitivity photonic micro sensor was developed for electric field detection. The sensor exploits the optical modes of a dielectric sphere. Changes in the external electric field perturb the sphere morphology leading to shifts in its optical modes. The electric field strength is measured by monitoring these optical shifts.

Full-Field Optical Coherence Microscopy for Histology-Like Analysis of Stromal Features in Corneal Grafts

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Cited by 3 •

2022

We describe use of full-field optical coherence microscopy as a method for high quality assessment of corneal donor stroma. This protocol can be used to identify features indicative of health or disease, and is aimed at improving the screening and selection of donor tissues, and hence the results of keratoplasty.

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