Quantitative phase microscopy of microstructures with extended measurement range and correction of chromatic aberrations by multiwavelength digital holography

P Ferraro, L Miccio, S Grilli, M Paturzo, S De Nicola… - Optics express, 2007 - opg.optica.org
Quantitative Phase Microscopy (QPM) by interferometric techniques can require a
multiwavelength configuration to remove 2π ambiguity and improve accuracy. However …

[PDF][PDF] Quantitative Phase Microscopy of microstructures with extended measurement range and correction of chromatic aberrations by multiwavelength digital …

P Ferraro, L Miccio, S Grilli, M Paturzo, S De Nicola… - 2007 - academia.edu
Quantitative Phase Microscopy (QPM) by interferometric techniques can require a
multiwavelength configuration to remove π2 ambiguity and improve accuracy. However …

Quantitative Phase Microscopy of microstructures with extended measurement range and correction of chromatic aberrations by multiwavelength digital holography

P Ferraro, L Miccio, S Grilli, M Paturzo, S De Nicola… - 2007 - opg.optica.org
Quantitative Phase Microscopy (QPM) by interferometric techniques can require a
multiwavelength configuration to remove π2 ambiguity and improve accuracy. However …

Quantitative Phase Microscopy of microstructures with extended measurement range and correction of chromatic aberrations by multiwavelength digital holography

P Ferraro, L Miccio, S Grilli, M Paturzo… - Optics …, 2007 - pubmed.ncbi.nlm.nih.gov
Quantitative Phase Microscopy (QPM) by interferometric techniques can require a
multiwavelength configuration to remove 2pi ambiguity and improve accuracy. However …

[PDF][PDF] Quantitative Phase Microscopy of microstructures with extended measurement range and correction of chromatic aberrations by multiwavelength digital …

P Ferraro, L Miccio, S Grilli, M Paturzo, S De Nicola… - 2007 - researchgate.net
Quantitative Phase Microscopy (QPM) by interferometric techniques can require a
multiwavelength configuration to remove π2 ambiguity and improve accuracy. However …

[引用][C] Quantitative Phase Microscopy of microstructures with extended measurement range and correction of chromatic aberrations by multiwavelength digital …

S De Nicola, P Ferraro, A Finizio, S Grilli… - OPTICS …, 2007 - re.public.polimi.it
Quantitative Phase Microscopy of microstructures with extended measurement range and
correction of chromatic aberrations by multiwavelength digital holography IRIS IRIS Home Sfoglia …

[引用][C] Quantitative Phase Microscopy of microstructures with extended measurement range and correction of chromatic aberrations by multiwavelength digital …

P Ferraro, L Miccio, S Grilli, M Paturzo, S De Nicola… - Optics Express, 2007 - cir.nii.ac.jp
Quantitative Phase Microscopy of microstructures with extended measurement range and
correction of chromatic aberrations by multiwavelength digital holography | CiNii Research …

[引用][C] Quantitative Phase Microscopy of microstructures with extended measurement range and correction of chromatic aberrations by multiwavelength digital …

P Ferraro, L Miccio, S Grilli, M Paturzo… - Optics …, 2007 - ui.adsabs.harvard.edu
Quantitative Phase Microscopy of microstructures with extended measurement range and
correction of chromatic aberrations by multiwavelength digital holography - NASA/ADS Now …

Quantitative Phase Microscopy of microstructures with extended measurement range and correction of chromatic aberrations by multiwavelength digital holography.

P Ferraro, L Miccio, S Grilli, M Paturzo, S De Nicola… - Optics …, 2007 - europepmc.org
Quantitative Phase Microscopy (QPM) by interferometric techniques can require a
multiwavelength configuration to remove 2pi ambiguity and improve accuracy. However …

[PDF][PDF] Quantitative Phase Microscopy of microstructures with extended measurement range and correction of chromatic aberrations by multiwavelength digital …

P Ferraro, L Miccio, S Grilli, M Paturzo, S De Nicola… - 2007 - academia.edu
Quantitative Phase Microscopy (QPM) by interferometric techniques can require a
multiwavelength configuration to remove π2 ambiguity and improve accuracy. However …