CLASSE: Energy Recovery Linac

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ERL X-ray Science Workshop 3

Almost Impossible Materials Science: Pushing the Frontier with ERL X-Ray Beams

Friday, June 16th - Saturday, June 17th, 2006

Organizers: Ernie Fontes (Cornell High Energy Synchrotron Source), Peter Abbamonte (University of Illinois at Urbana-Champaign), Darren Dale (Cornell High Energy Synchrotron Source), Qun Shen (Advanced Photon Source, Argonne National Laboratory), & P. James Viccaro (Advanced Photon Source, Argonne National Laboratory)

Name Abstract
Ernie Fontes
Cornell University
Introduction and Workshop Goals
Don Bilderback
Cornell University
ERL Project Summary and Characteristics
Ian McNulty
Advanced Photon Source, Argonne National Laboratory
Almost-impossible Materials Science by 3D Diffraction Microscopy
Presentation pdf
Ian Robinson
University of London and Diamond Light Source
Strain Mapping by Coherent X-Ray Diffraction
Qun Shen
Argonne National Lab
X-Ray Imaging with Current Synchrotron and Future ERL Sources
Presentation pdf
Jianwei Miao
University of California - Los Angeles
Quantitative 3D Imaging of Nanostructured Materials by Using Coherent X-Rays
Presentation pdf
Roy Clarke
University of Michigan
Mapping Atomic Structure at Epitaxial Interfaces
Presentation pdf
Philip Willmott
Swiss Light Source
A New Era in Surface Diffraction - In-Situ Pulsed Laser Deposition of Complex Thin Films
Presentation pdf
Peter Abbamonte
University of Illinois at Urbana-Champaign
Can Coherent Pulses Reveal the Low Energy Charge Modes in Interacting Electron Systems?
Presentation pdf
Mark Sutton
McGill University
How Can X-Ray Intensity Fluctuation Spectroscopy Push the Frontiers of Material Science
Presentation pdf
Sol Gruner
Cornell University
Discussion: X-Ray Detectors on the Horizon
Ercan Alp
APS, Argonne National Laboratory
Inelastic X-Ray Scattering as a Materials Probe Under Extreme Conditions
Presentation pdf
Eric Isaacs
CNM, Argonne National Laboratory
Dynamics at the Nanoscale
Presentation pdf
Brian Stephenson
APS, Argonne National Laboratory
Nanoscale Ferroelectricity
Harold Craighead
Cornell University
Nanoelectromechanical Systems