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Quantitative phase imaging based on holography: trends and new perspectives

219
Citations
June 27, 2024
Published Date

Research Abstract & Technology Focus

AbstractIn 1948, Dennis Gabor proposed the concept of holography, providing a pioneering solution to a quantitative description of the optical wavefront. After 75 years of development, holographic imaging has become a powerful tool for optical wavefront measurement and quantitative phase imaging. The emergence of this technology has given fresh energy to physics, biology, and materials science. Digital holography (DH) possesses the quantitative advantages of wide-field, non-contact, precise, and dynamic measurement capability for complex-waves. DH has unique capabilities for the propagation of optical fields by measuring light scattering with phase information. It offers quantitative visualization of the refractive index and thickness distribution of weak absorption samples, which plays a vital role in the pathophysiology of various diseases and the characterization of various materials. It provides a possibility to bridge the gap between the imaging and scattering disciplines. The propagation of wavefront is described by the complex amplitude. The complex-value in the complex-domain is reconstructed from the intensity-value measurement by camera in the real-domain. Here, we regard the process of holographic recording and reconstruction as a transformation between complex-domain and real-domain, and discuss the mathematics and physical principles of reconstruction. We review the DH in underlying principles, technical approaches, and the breadth of applications. We conclude with emerging challenges and opportunities based on combining holographic imaging with other methodologies that expand the scope and utility of holographic imaging even further. The multidisciplinary nature brings technology and application experts together in label-free cell biology, analytical chemistry, clinical sciences, wavefront sensing, and semiconductor production.
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What is the core focus of the research titled 'Quantitative phase imaging based on holography: trends and new perspectives'?

This literature focuses on: AbstractIn 1948, Dennis Gabor proposed the concept of holography, providing a pioneering solution to a quantitative description of the optical wavefront. After 75 years of development, holographic imaging has become a powerful tool for optical wav...

Are there open-source GitHub repositories related to Quantitative phase imaging based on holography: trends and new perspectives?

Yes, open-source projects like NawfalMotii79/PLFM_RADAR (Open-source, low-cost 10.5 GHz PLFM phased array RADAR system) are actively building upon these concepts.

What other academic literature is closely related to 'Quantitative phase imaging based on holography: trends and new perspectives'?

Yes, highly correlated activity was mapped. An entry titled 'Hydrogen Holographic Science and Intelligence' discusses this: Hydrogen Holographic Science & Intelligence Repository This repository serves as the central hub for the Hydrogen Holographic Expedition, providing...

Are there commercial applications of 'Quantitative phase imaging based on holography: trends and new perspectives' in market news publications?

Yes, highly correlated activity was mapped. An entry titled 'Electron' discusses this: Recent scientific advancements include shape-shifting materials inspired by nature, laser-based sustainable packaging, and novel insights into radi...

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