Saturday, January 17, 2015 7:04:43 PM
This page is for a conference that lists the program chair as Nadir Dagli -- He innovated much of SLTD and HYSR Technology along with help of all the other researchers and Eric McFarland..
Now leading a conference on the technological achievements..
Nadir Dagli, University of California Santa Barbara, United States
Andrea Melloni, Politecnico di Milano, Italy
http://www.osa.org/en-us/meetings/optics_and_photonics_congresses/advanced_photonics/integrated_photonics_research,_silicon_and_nano-ph/
Omni Parker House, Boston, Massachusetts, USA
27 June - 01 July 2015
Integrated Photonics Research (IPR) is the premier and longest-running meeting dedicated to groundbreaking advances in research and development of integrated photonic and nano-photonic technologies on all relevant material platforms.
IPR brings together experts from both academia and industry for an open discussion of cutting-edge research, trends and problems. IPR 2015 will broaden the scope of previous IPR meetings by incorporating new sub committees dedicated to emerging areas. Panel and open discussion sessions will also be included to facilitate a forum for free exchange of ideas and related discussion. In addition a special workshop on facilities and foundries for highly integrated photonics will be organized. Topics will include photonic integrated circuit design, technology and applications; physics and technology of on-chip active and passive photonic devices; planar waveguide technology, lightwave circuits and systems-on-the chip; theory, modeling and numerical simulation of waveguide and integrated photonic devices and circuits, as well as various topics of computational photonics. Also, IPR 2015 will continue to cover emerging topics in nano-photonics, new materials for photonics, such as two dimensional materials, epsilon-near-zero materials, integrated photonics for high precision applications such as frequency combs, electro-optic oscillators. There will also be special symposium on integrated quantum photonics, including generation, detection, transport and utilization of photons on the quantum levels.
Application areas within the scope of this meeting are very broad and include, but are not restricted to: optical tele- and data communications; optical interconnects, switching and storage; data and information processing, including integrated quantum circuits; and optical monitoring and sensing, including mid-IR photonics. On the material side, traditional III-V semiconductor photonic devices and integrated circuits; silicon based devices and waveguide circuitry; silica on silicon and polymer photonic lightwave circuits as well as new and emerging material platforms such as graphene, 2D materials, and transparent conducting oxides are all within the scope of IPR.
View the complete list of topic categories.
Topic Categories
Photonic Devices and Applications
Silicon and other Group IV integrated photonics: devices and complex circuits
SOI-based materials;
Passive and active devices;
Hybrid Light emitters, lasers, isolators, amplifiers, passives
III-V and Compound Semiconductor Devices and systems
Semiconductor modulators;
Filters;
Switches;
Wavelength converters;
VCSELs;
Planar amplifiers;
Photonic integrated circuits and optoelectronic integrated circuits;
Compound semiconductor WDM components;
Novel III-V quantum optoelectronic devices;
III-V Materials and Processing for Photonics
Reliability advances and issues;
Emerging packaging technologies
Dielectric and Polymer Waveguides and Waveguide Devices
Integrated planar waveguides;
Polymer-based waveguide devices;
Active/passive integrated components;
Switches;
Variable optical attenuators;
Modulators;
Filters;
Integrated isolators and circulators;
Planar dispersion compensators
Materials and Fabrication Technologies for Photonic Integrated Circuits
characterization of linear and nonlinear optical waveguide devices;
Micro-machines and micro-optic components;
Parallel optical interconnects;
Reliability advances and issues;
Novel assembly and manufacturing techniques; and low cost technology for polymer devices.
Non-reciprocal devices
LiNbO3 - and Other Pockels Effect Switches and Modulators: Ultrahigh-speed; low-Vp; devices; integrated scanners; and new fabrication methods.
Integrated Photonic Circuits and Systems
On-chip photonic interconnects;
Photonic A/D conversion;
Optical phased arrays;
Optical isolators;
Planar filtering devices, equalizers, dispersion compensators, wavelength selective switches, and other tele/datacom components
Nanophotonics: Nanostructured photonic devices
Photonic crystals (waveguides, resonators, light sources);
Nano-engineered devices for the generation, transport and detection of light;
Sub-wavelength devices;
Biological and chemical transducers
Nanostructured photovoltaics
Plasmonics
Nanofabrication Technology
Lithography and etching techniques;
Growth and deposition approaches;
Self-organized methods
Nanoscale structure characterization
Integrated High Precision Photonics
Frequency comb generation
Solitons
Mode locked lasers
Ultra-narrow linewidth oscillators
Harmonic generation
Raman and Brillouin gain
Super-continuum generation
Frequency (up/down) conversion
Infrared and ultraviolet generation
Physics, theory and applications of linear and nonlinear processes in novel integrated structures
Nonlinear switching, modulation, memories and logic
Nonlinear optics in metamaterials, and opto-mechanics
New Materials for Photonics
Novel Materials for Advanced Opto-Electronics:
Active Graphene Photonics;
Beyond Graphene: the new class of 2D materials;
Giant index modulation in transparent conductive oxides
Epsilon Near Zero materials
Theory, Simulation and Novel Physical Insights:
Devices Beyond Conventional Limits;
Enhanced Light Matter Interactions;
Computational Analysis and Methods
Emerging Opto-electronic Devices and Platforms
Plasmons and Nanolasers;
Ultra Compact Electro-optic Modulators;
Nano-Photonic Device Integration;
Heterogeneous and Hybrid Platforms
Special symposium on Integrated Quantum Photonics
Single photon sources
Single-photon detectors
Quantum computers
Quantum repeaters
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