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Electro-optic photonic circuits = fr...
~
Di Domenico, Giuseppe.
Electro-optic photonic circuits = from linear and nonlinear waves in nanodisordered photorefractive ferroelectrics /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Electro-optic photonic circuits/ by Giuseppe Di Domenico.
Reminder of title:
from linear and nonlinear waves in nanodisordered photorefractive ferroelectrics /
Author:
Di Domenico, Giuseppe.
Published:
Cham :Springer International Publishing : : 2019.,
Description:
xix, 136 p. :ill., digital ; : 24 cm.;
Contained By:
Springer eBooks
Subject:
Optoelectronics. -
Online resource:
https://doi.org/10.1007/978-3-030-23189-7
ISBN:
9783030231897
Electro-optic photonic circuits = from linear and nonlinear waves in nanodisordered photorefractive ferroelectrics /
Di Domenico, Giuseppe.
Electro-optic photonic circuits
from linear and nonlinear waves in nanodisordered photorefractive ferroelectrics /[electronic resource] :by Giuseppe Di Domenico. - Cham :Springer International Publishing :2019. - xix, 136 p. :ill., digital ;24 cm. - Springer theses,2190-5053. - Springer theses..
Nonlinear optical beams in nanodisordered photorefractive ferroelectrics -- Microscopy -- Miniaturized photogenerated electro-optic axicon lens Gaussian-to-Bessel beam conversion -- Diffraction-free light droplets for axially-resolved volume imaging -- Self-suppression of Bessel beam side lobes for high-contrast light sheet microscopy -- Microscopic reversibility, nonlinearity, and the conditional nature of single particle entanglement -- Super-crystals in composite ferroelectrics -- Intrinsic negative-mass from nonlinearity -- Rogue waves: transition to turbulence and control through spatial incoherence -- Appendix.
This book reports new findings in the fields of nonlinear optics, quantum optics and optical microscopy. It presents the first experimental device able to transform an input Gaussian beam into a non-diffracting Bessel-like beam. The modulation mechanism, i.e. electro-optic effect, allows the device to be fast, miniaturizable and integrable into solid state arrays. Also presented is an extensive study of the superposition of Bessel beams and their propagation in turbid media, with the aim of realizing field that is both localized and non-diffracting. These findings have been implemented in a light-sheet microscope to improve the optical sectioning. From a more theoretical point of view this work also tackles the problem of whether and how a single particle is able to entangle two distant systems. The results obtained introduce fundamental limitations on the use of linear optics for quantum technology. Other chapters are dedicated to a number of experiments carried out on disordered ferroelectrics including negative intrinsic mass dynamics, ferroelectric supercrystals, rogue wave dynamics driven by enhanced disorder and first evidence of spatial optical turbulence.
ISBN: 9783030231897
Standard No.: 10.1007/978-3-030-23189-7doiSubjects--Topical Terms:
563472
Optoelectronics.
LC Class. No.: TA1750 / .D536 2019
Dewey Class. No.: 621.381045
Electro-optic photonic circuits = from linear and nonlinear waves in nanodisordered photorefractive ferroelectrics /
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from linear and nonlinear waves in nanodisordered photorefractive ferroelectrics /
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Nonlinear optical beams in nanodisordered photorefractive ferroelectrics -- Microscopy -- Miniaturized photogenerated electro-optic axicon lens Gaussian-to-Bessel beam conversion -- Diffraction-free light droplets for axially-resolved volume imaging -- Self-suppression of Bessel beam side lobes for high-contrast light sheet microscopy -- Microscopic reversibility, nonlinearity, and the conditional nature of single particle entanglement -- Super-crystals in composite ferroelectrics -- Intrinsic negative-mass from nonlinearity -- Rogue waves: transition to turbulence and control through spatial incoherence -- Appendix.
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This book reports new findings in the fields of nonlinear optics, quantum optics and optical microscopy. It presents the first experimental device able to transform an input Gaussian beam into a non-diffracting Bessel-like beam. The modulation mechanism, i.e. electro-optic effect, allows the device to be fast, miniaturizable and integrable into solid state arrays. Also presented is an extensive study of the superposition of Bessel beams and their propagation in turbid media, with the aim of realizing field that is both localized and non-diffracting. These findings have been implemented in a light-sheet microscope to improve the optical sectioning. From a more theoretical point of view this work also tackles the problem of whether and how a single particle is able to entangle two distant systems. The results obtained introduce fundamental limitations on the use of linear optics for quantum technology. Other chapters are dedicated to a number of experiments carried out on disordered ferroelectrics including negative intrinsic mass dynamics, ferroelectric supercrystals, rogue wave dynamics driven by enhanced disorder and first evidence of spatial optical turbulence.
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Physics and Astronomy (Springer-11651)
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