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20202025
most citedLight-field imaging from position-momentum correlations

8 citations · 12 across the 9 of their papers we have counts for

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physics.optics20253 cited

Robustness of chaotic-light correlation imaging against turbulence

Giovanni Scala, Gianlorenzo Massaro, Germano Borreggine +3

We consider an imaging scheme, inspired by microscopy, in which both correlation imaging and first-order intensity imaging can be performed simultaneously, to investigate the effec…

physics.optics2024

Innovative schemes for Correlation Plenoptic Imaging

Gianlorenzo Massaro, Francesco Di Lena, Augusto Garuccio +2

CPI is a novel imaging modality capable of addressing the intrinsic limitations of conventional plenoptic imaging - namely, the resolution loss and the sacrificed change of perspec…

physics.optics20241 cited

Plenoptic microscopy and photography from intensity correlations

Francesco V. Pepe, Francesco Di Lena, Augusto Garuccio +7

We present novel methods to perform plenoptic imaging at the diffraction limit by measuring intensity correlations of light. The first method is oriented towards plenoptic microsco…

physics.optics2024

Correlation Hyperspectral Imaging

Gianlorenzo Massaro, Francesco V. Pepe, Milena D'Angelo

Hyperspectral imaging aims at providing information on both the spatial and the spectral distribution of light, with high resolution. However, state-of-the-art protocols are charac…

physics.optics2024

Assessing the 3D resolution of refocused correlation plenoptic images using a general-purpose image quality estimator

Gianlorenzo Massaro

Correlation plenoptic imaging (CPI) is emerging as a promising approach to light-field imaging (LFI), a technique enabling simultaneous measurement of light intensity distribution…

physics.optics20248 cited

Light-field imaging from position-momentum correlations

Davide Giannella, Gianlorenzo Massaro, Bohumil Stoklasa +2

Correlation plenoptic imaging (CPI) is a light-field imaging technique employing intensity correlation measurements to simultaneously detect the spatial distribution and the propag…