Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where F. Di Mei is active.

Publication


Featured researches published by F. Di Mei.


Optical Materials Express | 2014

Observation of an intrinsic nonlinearity in the electro-optic response of freezing relaxors ferroelectrics

D. Pierangeli; F. Di Mei; J. Parravicini; Gianbattista Parravicini; Aharon J. Agranat; Claudio Conti; Eugenio DelRe

We demonstrate an electro-optic response that is linear in the amplitude but independent of the sign of the applied electric field. The symmetry-preserving linear electro-optic effect emerges at low applied electric fields in freezing nanodisordered KNTN above the dielectric peak temperature, deep into the nominal paraelectric phase. Strong temperature dependence allows us to attribute the phenomenon to an anomalously reduced thermal agitation in the reorientational response of the underlying polar-nanoregions.


Optics Letters | 2014

Photorefractive light needles in glassy nanodisordered KNTN

D. Pierangeli; J. Parravicini; F. Di Mei; G. B. Parravicini; Aharon J. Agranat; Eugenio DelRe

We study the formation of 2D self-trapped beams in nanodisordered potassium-sodium-tantalate-niobate (KNTN) cooled below the dynamic glass transition. Supercooling is shown to accelerate the photorefractive response and enhance steady-state anisotropy. Effects in the excited state are attributed to the anomalous slim-loop polarization curve typical of relaxors dominated by non-interacting polar-nano-regions.


Nature Communications | 2016

Super-crystals in composite ferroelectrics

D. Pierangeli; M. Ferraro; F. Di Mei; G. Di Domenico; C.E.M. de Oliveira; Aharon J. Agranat; E. DelRe

As atoms and molecules condense to form solids, a crystalline state can emerge with its highly ordered geometry and subnanometric lattice constant. In some physical systems, such as ferroelectric perovskites, a perfect crystalline structure forms even when the condensing substances are non-stoichiometric. The resulting solids have compositional disorder and complex macroscopic properties, such as giant susceptibilities and non-ergodicity. Here, we observe the spontaneous formation of a cubic structure in composite ferroelectric potassium–lithium–tantalate–niobate with micrometric lattice constant, 104 times larger than that of the underlying perovskite lattice. The 3D effect is observed in specifically designed samples in which the substitutional mixture varies periodically along one specific crystal axis. Laser propagation indicates a coherent polarization super-crystal that produces an optical X-ray diffractometry, an ordered mesoscopic state of matter with important implications for critical phenomena and applications in miniaturized 3D optical technologies.


Optics Express | 2011

Diffraction cancellation over multiple wavelengths in photorefractive dipolar glasses

J. Parravicini; F. Di Mei; Claudio Conti; Aharon J. Agranat; Eugenio DelRe

We report the simultaneous diffraction cancellation for beams of different wavelengths in out-of-equilibrium dipolar glass. The effect is supported by the photorefractive diffusive nonlinearity and scale-free optics, and can find application in imaging and microscopy.


Optics Express | 2013

Aging solitons in photorefractive dipolar glasses

J. Parravicini; D. Pierangeli; F. Di Mei; Claudio Conti; Aharon J. Agranat; Eugenio DelRe

We study experimentally the aging of optical spatial solitons in a dipolar glass hosted by a nanodisordered sample of photorefractive potassium-sodium-tantalate-niobate (KNTN). As the system ages, the waves erratically explore varying strengths of the nonlinear response, causing them to break up and scatter. We show that this process can still lead to solitons, but in a generalized form for which the changing response is compensated by changing the normalized wave size and intensity so as to maintain fixed the optical waveform.


Physical Review Letters | 2016

Intrinsic negative mass from nonlinearity

F. Di Mei; P. Caramazza; D. Pierangeli; G. Di Domenico; H. Ilan; Aharon J. Agranat; P. Di Porto; E. DelRe

We propose and provide experimental evidence of a mechanism able to support negative intrinsic effective mass. The idea is to use a shape-sensitive nonlinearity to change the sign of the mass in the leading linear propagation equation. Intrinsic negative-mass dynamics is reported for light beams in a ferroelectric crystal substrate, where the diffusive photorefractive nonlinearity leads to a negative-mass Schrödinger equation. The signature of inverted dynamics is the observation of beams repelled from strongly guiding integrated waveguides irrespective of wavelength and intensity and suggests shape-sensitive nonlinearity as a basic mechanism leading to intrinsic negative mass.


Optics Letters | 2017

Observation of polarization-maintaining light propagation in depoled compositionally disordered ferroelectrics

M. Ferraro; D. Pierangeli; Mariano Flammini; G. Di Domenico; L. Falsi; F. Di Mei; Aharon J. Agranat; Eugenio DelRe

We investigate the evolution of the state of polarization of light propagating through bulk depoled composite ferroelectrics below the Curie temperature. In contrast to standard depoled ferroelectrics, where random birefringence causes depolarization and scattering, light is observed to suffer varying degrees of depolarization and remains fully polarized when linearly polarized along the crystal principal axes. The effect is found to be supported by the formation of polarized speckles organized into a spatial lattice and occurs as the ferroelectric settles into a spontaneous super-crystal, a three-dimensional coherent mosaic of ferroelectric clusters. The polarization lattices gradually disappear as the ferroelectric state reduces to a disordered distribution of polar nanoregions above the critical point.


Optics Express | 2014

Anti-diffracting beams through the diffusive optical nonlinearity

F. Di Mei; J. Parravicini; D. Pierangeli; Claudio Conti; Aharon J. Agranat; Eugenio DelRe

Anti-diffraction is a theoretically predicted nonlinear optical phenomenon that occurs when a light beam spontaneously focalizes independently of its intensity. We observe anti-diffracting beams supported by the peak-intensity-independent diffusive nonlinearity that are able to shrink below their diffraction-limited size in photorefractive lithium-enriched potassium-tantalate-niobate (KTN:Li).


Journal of Optics | 2015

Miniaturized electro-optic infrared beam-manipulator based on 3D photorefractive funnels

Jacopo Parravicini; F. Di Mei; D. Pierangeli; Aharon J. Agranat; Eugenio DelRe

We demonstrate tunable electro-optic guiding, shaping, and switching of beams in the near infrared spectrum ( 980 nm), typical of VCSEL technology, using biomimetic 3D funnel waveguides miniaturized into a sample of potassium–lithium–tantalate–niobate. The switchable waveguides are written using the slow photorefractive build-up of a 3D volume space-charge field caused by a diffracting continuous wave low intensity λ = 532 nm beam, and electro-optic functionality is supported by the quadratic electro-optic effect of the high-symmetry paraelectric phase.


Physical Review Letters | 2015

Spatial Rogue Waves in Photorefractive Ferroelectrics

D. Pierangeli; F. Di Mei; Claudio Conti; Aharon J. Agranat; Eugenio DelRe

Collaboration


Dive into the F. Di Mei's collaboration.

Top Co-Authors

Avatar

Aharon J. Agranat

Hebrew University of Jerusalem

View shared research outputs
Top Co-Authors

Avatar

D. Pierangeli

Sapienza University of Rome

View shared research outputs
Top Co-Authors

Avatar

Eugenio DelRe

Sapienza University of Rome

View shared research outputs
Top Co-Authors

Avatar

Claudio Conti

National Research Council

View shared research outputs
Top Co-Authors

Avatar

G. Di Domenico

Sapienza University of Rome

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar

E. DelRe

Fondazione Ugo Bordoni

View shared research outputs
Top Co-Authors

Avatar

M. Ferraro

Sapienza University of Rome

View shared research outputs
Top Co-Authors

Avatar

C.E.M. de Oliveira

Hebrew University of Jerusalem

View shared research outputs
Top Co-Authors

Avatar

Mariano Flammini

Sapienza University of Rome

View shared research outputs
Researchain Logo
Decentralizing Knowledge