Publications

From our users
Analyst, 148, 3584-3593, (2023)
Infrared nanospectroscopy depth-dependent study of modern materials: morpho-chemical analysis of polyurethane/fibroin binary meshes
A. Caldiroli, S. Cappelletti, G. Birarda, A. Redaelli, S.A. Riboldi, C. Stani, L. Vaccari, F. Piccirilli
Our Research
Adv. Mater. Interfaces, 2201337, (2022)
Visible Light Effects on Photostrictive/Magnetostrictive PMN-PT/Ni Heterostructure
D. Dagur, V. Polewczyk, A.Y. Petrov, P. Carrara, M. Brioschi, S. Fiori, R. Cucini, G. Rossi, G. Panaccione, P. Torelli, G. Vinai
Involved NFFA techniques:
MOKE, XPS, XAS/XMCD @ APE-HE, XRD
From our users
Anal. Chem., 94, 43, 14815–14819, (2022)
A Nanofocused Light on Stradivari Violins: Infrared s-SNOM Reveals New Clues Behind Craftsmanship Mastery
C. Stani, C. Invernizzi, G. Birarda, P. Davit, L. Vaccari, M. Malagodi, M. Gulmini, and G. Fiocco
Our Research
Phys. Rev. Applied, 18, 044009, (2022)
All-Optical Generation and Time-Resolved Polarimetry of Magnetoacoustic Resonances via Transient Grating Spectroscopy
P. Carrara, M. Brioschi, E. Longo, D. Dagur, V. Polewczyk, G. Vinai, R. Mantovan, M. Fanciulli, G. Rossi, G. Panaccione, and R. Cucini
Involved NFFA techniques:
MOKE, TG @ SPRINT
NFFA Thesis
University of Milan Master's Degree Thesis, (2021)
Transient grating spectroscopy with a magnetic probe: a study on phonon-driven magnons in a ferromagnetic thin film
M. Brioschi (Supervisors: G. Rossi, G. Panaccione, R. Cucini)
Involved NFFA technique:
TG @ SPRINT
From our users
Nanomaterials, 11(5), 1103, (2021)
Infrared Nanospectroscopy Reveals DNA Structural Modifications upon Immobilization onto Clay Nanotubes
F. Piccirilli, F. Tardani, A. D’Arco, G. Birarda, L. Vaccari, S. Sennato, S. Casciardi and S. Lupi
Our Research
Phys. Rev. Materials, 4, 025006, (2020)
Direct insight into the band structure of SrNbO3
C. Bigi, P. Orgiani, J. Slawinska, J. Fujii, J.T. Irvine, S. Picozzi, G. Panaccione, I. Vobornik, G. Rossi, D. Payne, and F. Borgatti
Involved NFFA techniques:
ARPES and spin ARPES @ APE-LE, DFT, PLD
Our Research
Phys. Rev. B, 99, 075306, (2019)
Fe/GeTe(111) heterostructures as an avenue towards spintronics based on ferroelectric Rashba semiconductors
J. Sławińska, D. Di Sante, S. Varotto, C. Rinaldi, R. Bertacco, and S. Picozzi
Our Research
Phys. Rev. Materials, 2(6), 065001, (2018)
Role of Spin-Orbit Coupling in the Electronic Structure of IrO2
P. K. Das, J. Sławińska, I. Vobornik, J. Fujii, A. Regoutz, J.M. Kahk, D.O. Scanlon, B.J. Morgan, C. McGuinness, E. Plekhanov, D. Di Sante, Y.-S. Huang, R.-S. Chen, G. Rossi, S. Picozzi, W.R. Branford, G. Panaccione, and D.J. Payne
Involved NFFA techniques:
ARPES and spin ARPES @ APE-LE, DFT
From our users
Nano Lett., 18, 5, 2751–2758, (2018)
Ferroelectric Control of the Spin Texture in GeTe
C. Rinaldi , S. Varotto, M. Asa, J. Sławińska, J. Fujii, G. Vinai, S. Cecchi, D. Di Sante, R. Calarco, I. Vobornik, G. Panaccione, S. Picozzi, R. Bertacco
Our Research
Phys. Rev. B, 94, 241114, (2016)
Hidden spin polarization in nonmagnetic centrosymmetric BaNiS2 crystal: Signatures from first principles
J. Sławinska, A. Narayan and S. Picozzi
Involved NFFA technique:
DFT