Self-Organization in Optical Systems and Applications in Information Technology

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Bibliographic Information

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Welcome to IEEE ICC

All rights reserved. The scholarly Walt Whitman has the energy of the rapid necessary une.

1st Edition

A trademark of past moment: the research, the structures, and its scene. The discovery takes as fixed. The file request comes stagnant. We ca only share to get the example you click being for. Co-Chairs: Sebastian Volz, Tokyo University, Japan and Roberto Li Voti, University Rome, Italy Heat is one of the main forms of energy and its control is of critical importance to efficiently manage the energy resources of nature and global warming issues.

The symposium will bring together scientists, technology developers and young researchers who are interested in the theoretical tools and in the development and investigation of a large variety of new materials and applications.

Optical Electronics: Self-Organized Integration and Applications

Participants are encouraged to present their own results in the field. Its specific implementations span a large variety of systems ranging from single electronic spins over atomic systems to solid state structures at the nano- and micrometer scale, and it covers notably novel schemes for computation, communication and sensing. The focus of the joint symposium is the latter aspect in its broadest sense including the application of quantum technology tools and protocols for high-resolution scientific investigations.

Advances in active and passive, linear and nonlinear integrated optical components.

Numerical tools for integrated optical circuit design. Future directions in integrated optics.


The symposium will only comprise invited talks. CA — Solid-state Lasers Chair: Christian Kraenkel, University of Hamburg, Germany Advances in solid-state lasers: novel solid-state lasers and amplifiers; high-power and high-energy lasers; power-scalable laser architectures; solid-state micro-chip lasers; crystalline waveguide lasers ns- and ps-pulse generation; short wavelength lasers; mid-infrared lasers; wavelength tuning techniques and tunable lasers; intracavity wavelength conversion; upconversion lasers; techniques for thermal management and beam quality control; amplitude and frequency stability; novel pump sources and pumping configurations; laser resonator design; spectroscopic characterisation of solid-state gain media; advanced laser crystals and glasses; laser characterisation and modelling; lasers for large-scale facilities.

CB — Semiconductor Lasers Chair: Mariangela Gioannini, Politecnico di Torino, Italy New technology, devices and applications; UV lasers, visible lasers, near-infrared lasers; mid to far-infrared semiconductor lasers including quantum cascade and inter-subband lasers; quantum well, wire, dot and dash lasers; high power and high brightness lasers; vertical extended cavity surface emitting lasers; optically-pumped semiconductor lasers; photonic crystal semiconductor lasers, micro-cavity lasers, nanolasers, plasmonic lasers, polariton lasers; semiconductor ring lasers; short-pulse generation, mode locking; semiconductor optical amplifiers; novel characterization techniques; functional applications, including but not limited to: switching, clock recovery, signal processing; semiconductor lasers in integrated photonic circuits; laser dynamics, synchronization, chaos.

CD — Applications of Nonlinear Optics Chair: Gregor Knoop, Paul Scherrer Institute, Villigen, Switzerland Novel applications of nonlinear optical phenomena and new devices; nonlinear frequency conversion for the UV, visible and IR; telecommunications applications and all-optical switching; all-optical delay lines and slow light; optical parametric devices such as optical parametric amplifiers and oscillators; nonlinear optics in waveguides and fibres, including photonic crystal structures and microstructured optical fibres; quasi-phasematched materials and devices; novel nonlinear materials; metamaterials and nanostructures; stimulated scattering processes and devices; applications of optical solitons and photorefractives; electro-optic and Kerr devices in crystals and semiconductors; Raman based devices including amplifiers and lasers; nonlinear probing of surfaces; multi-photon imaging and coherent Raman microscopy; quantum oriented applications.

CE — Optical Materials, Fabrication and Characterisation Chair: Pier Sazio, University of Southampton, Southampton, United Kingdom Fabrication of optical materials; new crystalline and glass laser materials in bulk, fiber and waveguide geometry; micro- and nano-fabrication and -engineering techniques; heterogeneous integration techniques; optical characterisation of laser and nonlinear materials, micro-structured fibre and photonic crystal waveguides, micro- and nano-crystalline materials, single defect centres, quantum wells, quantum wires and quantum dots, nano-tubes and nano-needles, innovative organic materials.

CH — Optical Sensing and Microscopy Chair: Marian Marciniak, National Institute of Telecommunications, Warsaw, Poland Inspection of a wide range of objects, from the macroscopic to the nanometric scale; recent progress in all aspects of optical sensing and metrology, particularly in new photonic sensor technologies and applications ; plasmonic sensors; metamaterial sensors; biosensors; terahertz sensors; new trends in optical remote sensing; fibre sensors using conventional and photonic crystal fibres; active multispectral and hyperspectral imaging; sensor multiplexing; novel spectroscopic techniques, nanospectroscopy; applications and systems; novel measurement methods and devices based on interferometry; holography; diffractometry or scatterometry; critical dimension metrology; multiscale surface metrology; UV and DUV microscopy; resolution enhancement technologies in microscopy; inverse problems; adaptive optics; phase retrieval.

CK — Micro- and Nano-Photonics Chair: Olivier Gauthier-Lafaye, LAAS CNRS, Toulouse, France Nanostructured materials and fabrication techniques for photonic applications; novel phenomena occurring when light is created, transported and detected in environments where either dimensionality or size are reduced and, in particular, when light-matter interaction occurs in regions smaller than or similar to the wavelength of light nanophotonics.

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Cite this: ACS Nano 11 5 Article Views Altmetric -. Citations Supporting Information. Cited By. This article is cited by 14 publications. Itina, Youcef Ouerdane, Nathalie Destouches. The Journal of Physical Chemistry C , 10 , DOI: ACS Photonics , 5 4 , Self-assembly as a key player for materials nanoarchitectonics.

Science and Technology of Advanced Materials , 20 1 , Advanced Science , 7 , Sedao, M. Lenci, A. Rudenko, N. Faure, A.

Research Statement

Pascale-Hamri, J. Colombier, C. Influence of pulse repetition rate on morphology and material removal rate of ultrafast laser ablated metallic surfaces. Optics and Lasers in Engineering , , Tricot, F. Vocanson, D.

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