Confirmed Invited Speakers List (9/12/02)

       

·        Ahn, Charles (USA)

Phase Transformable, Multifunctional Materials

 

·        Anda, Enrique (Brazil)

Mesoscopic Transport in Highly Correlated Systems

 

·        Bao, Jiming (USA)

All Optical Implementation of Multi-Spin Entanglement in a Semiconductor Quantum Well

·        Cabrera, Alejandro (Chile)

Ferroelectric Oxides:  A Novel Material for Gas Separation

 

·        Doolittle, Alan (USA)

Opportunities for and Realization of Multifunctional Materials Integrated with Wide Bandgap Semiconductors

·        Ensslin, Klaus (Zurich)

Spin and Orbital Effects in Quantum Rings

 

·        Eom, Chang-Beom (USA)

Epitaxial Piezoelectric Heterostructures on Silicon

 

·        Fainstein, Alejandro (Argentina)

Confined Acoustical Phonons Generated and Studied Using Microcavity Confined Photons

·        Gershoni, David (Israel)

Quantum Dots: a Source of Multicolor Photons with Tunable Statistics and Correlated Polarizations

·        Hanbicki, Aubrey (USA)

Electrical Spin Injection

 

·        Hawrylak, Pawel (Canada)

Manipulating Charge and Spin of Single Electrons and Polarization of Single Photons in Quantum Dots

·        Hernandez-Calderon (Mexico)

Growth and Characterization of Ultra-Thin Quantum Wells of II-VI Semiconductors for Optoelectronics Applications

·        Janko, Boldizsar (USA)

Magnetic Semiconductors

 

·        Ketterson, John (USA)

Novel magnetic Semiconductors

 

·        Lederman, David (USA)

Magnetic Nanostructures, Spin Injection, and Sensor Applications

 

·        Levy, Jeremy (USA)

Multifunction Materials for Quantum Computation

 

·        McCombe, Bruce (USA)

Ferromagnetism in GaAs/Mn and GaSb/Mn Digital Alloys

 

·        Medeiros-Ribeiro, Gilberto (Brazil)

Spin Properties of S-StateElectrons Trapped in InAs Quantum Dots

 

·        Moeckly, Brian (USA)

Integration of HTS Thin Film Interconnects with High-Speed Optoelectronics Devices

·        Myers, Tom (USA)

Considerations for Epitaxial Growth of Multifunctional Materials on GaN

·        Nelson, Keith (USA)

Terahertz Polaritons: An Integrated Multifunctional Platform

 

·        Palmstrom, Chris (USA)

Thin Film Epitaxial Heusler Alloys: Multifunctional Materials

 

·        Pandey, Raghvendra (USA)

lmenite-Hematite: a Magnetic, Semiconducting, and Ferroelectric, Material for Spintronics and Microelectronics Devices

·        Pestorius, Mike (UK)

ONRIFO Outreach to Latin America

 

·        Pinczuk, Aron (USA)

Spectroscopy of Quantum Structures

 

·        Scheel, Harald (Germany)

Interplay between Type-II Superconductor and 2D Electron Gas in Hybrid Structures

·        Schlom, Darrell (USA)

Integration of Ferroelectric and Ferromagnetic Oxides with Silicon by MBE

·        Schmidt, Hugo (USA)

Photostrictive Effect in Polar Ceramics and Crystals

 

·        Shalaev, Vladimir (USA)

 

Manipulating Light and Sensing molecules with Plasmonic Nanomaterials

·        Spencer, Mike (USA)

 

Characterization of Nitride Surfaces by Scanning Kelvin Probe Technology

·        Steren, Laura (Argentina)

Interlayer Coupling and Magnetic Anisotropies of Ferromagnet/Semiconductor Heterostructures

·        Tamborenea, Pablo (Argentina)

Electronic Spin Relaxation in Semiconductors

 

·        Tischler, Joseph (USA)

Optically Controlled Magnetic Nanostructures

 

·        Ulloa, Sergio (USA)

Tuning Electrical and Optical Response in/with Quantum dot Aggregates

·        Wessels, Bruce (USA)

 

High Temperature Ferromagnetic Semiconductors for Spintronics

·        Xi, X.X. (USA)

 

Epitaxial Multifunctional Heterostructures Consisting of Borides

·        Ziemer, Katherine (USA)

Interface Analysis and Manipulation for Thin Film Ferromagnetic/Semiconductor Deposition

 

Invited speakers will present technical data. Presentations will last 10 minutes with 10 minutes for discussion.  A maximum of 7 overhead transparencies are to be presented, and will be strictly adhered to.  Also, we stress no introductory or acknowledgement transparencies as these take time from the little available.