Dr. Marta Carli
Postdoc at Univ degli Studi di Padova
SPIE Involvement:
Author
Area of Expertise:
Plasmonics , Nanofabrication , Spectroscopy , Microscopy , Nonlinear Optics , Orbital Angular Momentum of light
Profile Summary

My research expertise is mainly in the field of plasmonics and nanotechnology, with a focus on nanofabrication and optical + morphological characterization of nanostructures. Recently, I expanded my activity to the modeling of plasmonic structures for nonlinear spectroscopy (CARS) and super-resolution microscopy (STED).
During my PhD, I have been working on applications regarding the Orbital Angular Momentum (OAM) of light and I have contributed to the development of an ellipsometer-SNOM combined instrument for the coupled characterization of the far-field and near-field properties of plasmonic nanostructures.
Publications (4)

SPIE Journal Paper | August 13, 2015
OE Vol. 54 Issue 11
KEYWORDS: Spiral phase plates, Holograms, Computer generated holography, Optical design, Fourier transforms, Signal to noise ratio, Optical components, Electron beam lithography, Optical engineering, Diffractive optical elements

PROCEEDINGS ARTICLE | March 10, 2015
Proc. SPIE. 9379, Complex Light and Optical Forces IX
KEYWORDS: Signal to noise ratio, Optical components, Electron beam lithography, Optical design, Holograms, Diffractive optical elements, Fourier transforms, Computer programming, Computer generated holography, Spiral phase plates

PROCEEDINGS ARTICLE | February 27, 2015
Proc. SPIE. 9371, Photonic and Phononic Properties of Engineered Nanostructures V
KEYWORDS: Gold, Plasmonics, Nanostructures, Photovoltaics, Electron beam lithography, Polarization, Numerical simulations, Near field scanning optical microscopy, Optical alignment, Nanorods

PROCEEDINGS ARTICLE | October 9, 2012
Proc. SPIE. 8457, Plasmonics: Metallic Nanostructures and Their Optical Properties X
KEYWORDS: Plasmonics, Nanostructures, Metals, Dielectrics, Silicon, Near field scanning optical microscopy, Wet etching, Spiral phase plates, Nanolithography, Phase shifts

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