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Theoretical Condensed Matter
Physics |
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Institution |
PI Name |
Project
Title |
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AMES LABORATORY |
Harmon |
Condensed
Matter Theory, Particle-Solid Interactions |
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AMES LABORATORY |
Harmon |
CMSN
- Magnetic Materials Bridging Basic and Applied Science |
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ARGONNE NATIONAL
LABORATORY |
Fradin |
Quantum
Computation with Electron Spins
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ARGONNE NATIONAL
LABORATORY |
Norman |
Condensed
Matter Theory |
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ARGONNE NATIONAL
LABORATORY |
Vinokur |
Materials
Theory Institute |
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ARGONNE NATIONAL
LABORATORY |
Wolf |
CMSN
- Microstructural Effects on the Mechanisms of Materials |
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BOSTON COLLEGE |
Wang |
Disorder
and Interaction in Correlated Electron Systems |
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BROOKHAVEN
NATIONAL LABORATORY |
Ku |
CMSN
- Predictive Capability for Strongly Correlated Systems |
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BROOKHAVEN
NATIONAL LABORATORY |
Tsvelik |
Condensed
Mattery Theory |
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CALIFORNIA,
UNIV. OF DAVIS |
Galli |
Semiconductor
Nanostructures by Scientific Design |
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CALIFORNIA,
UNIV. OF DAVIS |
Pickett |
Theory
of Real Correlated Electron Materials |
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CALIFORNIA,
UNIV. OF DAVIS |
Pickett |
CMSN
- Predictive Capability for Strongly Correlated Systems |
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CALIFORNIA,
UNIV. OF IRVINE |
Chernyshev |
Microscopic
Theory of Thermal Transport in Quantum Magnets |
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CALIFORNIA,
UNIV. OF IRVINE |
Mills |
Spin
Polarized Electron Probes and Magnetic Nanostructures |
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CALIFORNIA,
UNIV. OF IRVINE |
Wu |
First
Principles Exploration for the Origin of Ferromagnetism in Diluted Magnetic
Semiconductors |
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CALIFORNIA,
UNIV. OF IRVINE |
Yu |
Glasses
and Noise |
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CALIFORNIA,
UNIV. OF SAN DIEGO |
Di Ventra |
Time-Dependent
Density-Functional Formulation of Transport in Nanoscale Conductors |
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CASE WESTERN
RESERVE UNIV. |
Taylor |
Theory,
Modeling, and Simulation of Ion Transport in Ionomer Membranes |
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CHICAGO,
UNIVERSITY OF |
Nagel |
Systematic
Numerical Study of the Jamming Transition at Zero Temperature |
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CINCINNATI,
UNIVERSITY OF |
Jarrell |
CMSN
- Predictive Capability for Strongly Correlated Systems |
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COLUMBIA
UNIVERSITY |
Millis |
Theory
of Surface and Interface Properties of Correlated Electron Materials |
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CORNELL
UNIVERSITY |
Elser |
Algorithms
for Diffractive Microscopy |
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CORNELL
UNIVERSITY |
Henley |
Quasi-crystals
and Quasi-equivalence: Symmetries and Energies in Alloys and Biological
Materials |
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FLORIDA STATE
UNIVERSITY |
Bonesteel |
Correlated
Electrons in Reduced Dimensions |
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FLORIDA STATE
UNIVERSITY |
Schlottmann |
Strongly
Correlated Electron-Systems |
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FLORIDA,
UNIVERSITY OF |
Cheng |
Interfacial
Phenomena in Noble Metal-C60 Interaction |
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FLORIDA,
UNIVERSITY OF |
Cheng |
Molecular-
and Nano-wires: Properties and Control |
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FLORIDA,
UNIVERSITY OF |
Hirschfeld |
Grains,
Wires, and Interfaces of Cuprate Superconductors |
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GEORGIA TECH
RESEARCH CORP |
Chou |
First-Principles
Studies of Phase Stability and Reaction Dynamics in Complex Metal Hydrides |
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GEORGIA TECH
RESEARCH CORP |
Chou |
First-Principles
Investigation of Complex Materials Properties |
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GEORGIA TECH
RESEARCH CORP |
Chou |
CMSN
- Multiscale Studies of the Formation and Stability of Surface-Based
Nanostructures |
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GEORGIA TECH
RESEARCH CORP |
Zangwill |
Spin-Torque
in Systems with Inhomogeneous Magnetization |
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HARVARD
UNIVERSITY |
Kaxiras |
CMSN
- Multiscale Studies of the Formation and Stability of Surface-Based
Nanostructures |
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ILLINOIS,
UNIVERSITY OF |
Johnson |
Electronic-Structure-based
Thermodynamic Theory of Ordering In Size-Mismatched, Multicomponent
Materials: Direct Support of Scattering Experiments |
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ILLINOIS,
UNIVERSITY OF |
Morr |
Nanoscale
Structures and Novel Quantum Phenomena in Correlated Electron Systems |
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KANSAS STATE
UNIVERSITY |
Rahman |
Theoretical
and Computational Studies of Characteristics of Metallic Nanoclusters |
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KENTUCKY, UNIV.
OF RES FOUND |
Menon |
Physics
of Transition Metal-Semiconductor Systems in Low Dimensions |
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LAWRENCE
BERKELEY NATIONAL LAB |
Chzran |
CMSN
- Microstructural Effects on the Mechanics of Materials |
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LAWRENCE
BERKELEY NATIONAL LAB |
Anderson |
Center
for X-Ray Optics |
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LAWRENCE
BERKELEY NATIONAL LAB |
Cohen/Louie |
Quantum
Theory of Materials |
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LAWRENCE
BERKELEY NATIONAL LAB |
Lin-wang Wang |
Predicting
the Electronic Properties of 3D, Million-Atom Semiconductor Nanostructure
Architecture |
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LAWRENCE
BERKELEY NATIONAL LAB |
Louie |
CMSN
- Excited State Electronic Structure and Response Functions |
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LAWRENCE
BERKELEY NATL LAB |
Cohen/Louie |
Quantum
Theory of Materials
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LAWRENCE
LIVERMORE NATL LAB |
Bulatov |
CMSN
- Microstructural Effects on the Mechanics of Materials |
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LAWRENCE
LIVERMORE NATL LAB |
Galli |
Semiconductor
Nanostructures by Scientific Design |
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LOS ALAMOS
NATIONAL LABORATORY |
LeSar |
CMSN
- Microstructural Effects on the Mechanics of Materials |
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LOS ALAMOS
NATIONAL LABORATORY |
Trugman |
Integrated
Modeling of Novel Materials |
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MARYLAND,
UNIVERSITY OF |
Einstein |
CMSN
- Multiscale Studies of the Formation and Stability of Surface-Based
Nanostructures |
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MASSACHUSETTS
INST. OF TECH. |
Lee |
Strongly
Correlated Electronic Systems: Local
Moments and Conduction Electrons |
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MICHIGAN,
UNIVERSITY OF |
Glotzer |
Simulation
of Self-Assembly of Tethered Nanoparticle Shape Amphiphiles |
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MICHIGAN,
UNIVERSITY OF |
Glotzer |
Integrated
Multiscale Modeling of Molecular Computing Devices |
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MISSOURI,
UNIVERSITY OF |
Satpathy |
Fundamental
Studies of Magnetic Oxides from Electronic Structure Calculations |
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MISSOURI,
UNIVERSITY OF |
Ullrich |
Charge
and Spin Transport in Dilute Magnetic Semiconductors |
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MISSOURI,
UNIVERSITY OF |
Vignale |
Time-Dependent
Density-Functional Formulation of Transport in Nanoscale Conductors |
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NATIONAL
RENEWABLE ENERGY LAB |
Zunger |
Semiconductor
Theory |
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NATIONAL
RENEWABLE ENERGY LAB |
Zunger |
Predicting
Electronic Properties of 3D, Million Atom Nanostructure Architectures |
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NEW YORK, CITY
U. OF LEHMAN C. |
Chudnovsky |
Dynamics
of the Magnetic Flux in Superconductors |
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NORTH CAROLINA
STATE UNIV. |
Bernholc |
Theoretical
Investigations of Nanoscale Structures and Semiconductor Surfaces |
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NORTH CAROLINA
STATE UNIV. |
Bernholc |
Integrated
Multiscale Modeling of Molecular Computing Devices |
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NORTHEASTERN
UNIVERSITY |
Karma |
CMSN
- Fundamentals of Dirty Interfaces: From Atoms to Alloy Microstructures |
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NORTHERN
ILLINOIS UNIVERSITY |
van Veenendaal |
Polarized
X-Rays as a Probe of Spin Polarization and Interface and Confinement
Effects: A Theoretical Approach |
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NORTHWESTERN
UNIVERSITY |
Freeman |
Electronic
Structure and Novel Properties in Complex Oxides and Hetero-Interfaces |
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OAK RIDGE
NATIONAL LABORATORY |
Cooke |
Theory
of Condensed Matter |
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OAK RIDGE
NATIONAL LABORATORY |
Morris |
CMSN
- Fundamentals of Dirty Interfaces: From Atoms to Alloy Microstructures |
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OAK RIDGE
NATIONAL LABORATORY |
Nichols |
Integrated
Multiscale Modeling of Molecular Computing Devices
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OAK RIDGE
NATIONAL LABORATORY |
Radhakrishnan |
CMSN
- Microstructural Effects on the Mechanics of Materials
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OAK RIDGE
NATIONAL LABORATORY |
Stocks |
CMSN
- Magnetic Materials Bridging Basic and Applied Science
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OHIO STATE
UNIVERSITY RESEARCH |
Wilkins |
Modeling
Dynamically and Spatially Complex Materials |
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OHIO STATE
UNIVERSITY RESEARCH |
Wilkins |
CMSN
- Excited State Electronic Structure and Response Functions |
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OKLAHOMA STATE
UNIVERSITY |
Xie |
Charge
and Spin Transport in Low-Dimensional Systems |
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PENNSYLVANIA,
UNIVERSITY OF |
Liu |
A
Systematic Numerical Study of the Jamming Transition at Zero Temperature |
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PENNSYLVANIA,
UNIVERSITY OF |
Mele |
Condensed
Matter Physics at Surfaces and Interfaces of Solids |
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PITTSBURGH,
UNIVERSITY OF |
Goldschmidt |
Statistical
Mechanics of Polymers and Flux-Lines in Random Media |
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PRINCETON
UNIVERSITY |
Car |
Density
Functional Theory with Dissipation: Transport Through Single Molecules |
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PRINCETON
UNIVERSITY |
Srolovitz |
CMSN
- Fundamentals of Dirty Interfaces: From Atoms to Alloy Microstructures |
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RUTGERS - STATE
UNIV OF NJ |
Burke |
Density
Functional Theory with Dissipation: Transport Through Single Molecules |
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RUTGERS - STATE
UNIV OF NJ |
Coleman |
Collective
and Non-Equilibrium Behavior in Nano-Scale Spin Systems |
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RUTGERS - STATE
UNIV OF NJ |
Kotliar |
Correlation
Effects in the Actinide Series |
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SANDIA NATL
LAB/ALBUQUERQUE |
Hoyt |
CMSN
- Fundamentals of Dirty Interfaces: From Atoms to Alloy Microstructures |
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SOUTHERN
CALIFORNIA, UNIV. OF |
Haas |
Quantum
Percolation in Antiferromagnetic Systems |
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SOUTHERN
CALIFORNIA, UNIV. OF |
Vashishta |
Parallel
Multiscale Simulations of Nanoscale Systems in Extreme Environments |
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SOUTHERN
ILLINOIS UNIVERSITY |
Ge |
First
Principles Based Simulation of Hydrogen Interactions in Complex Hydrides |
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STANFORD |
Kivelson |
Local
and Macroscopic Properties of Stripe Ordered Conductors |
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STANFORD LINEAR
ACC CENTER |
Zhang |
Materials
Research - Nanoscale Magnetism in the Vortex State |
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TEMPLE
UNIVERSITY |
Riseborough |
Strongly
Correlated Electronic Materials |
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TENNESSEE,
UNIVERSITY OF |
Eguiluz |
CMSN
- Predictive Capability for Strongly Correlated Systems |
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TENNESSEE,
UNIVERSITY OF |
Quinn |
Numerical
Studies of Strong Interacting Two Dimensional Electron Liquids and the
Composite Fermion Picture |
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TENNESSEE,
UNIVERSITY OF |
Zhang |
Transport
and Collective Properties of Magnetic Semiconductor Multi layers and Nano
structures |
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TENNESSEE,
UNIVERSITY OF |
Zhang |
CMSN
- Multiscale Studies of the Formation and Stability of Surface-Based
Nanostructures |
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TEXAS A & M |
Pokrovsky |
Theory
of Magnetic Microstructures at the
Nanometer Scale |
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TEXAS,
UNIVERSITY OF |
Chelikowsky |
Theory
of Optical and Electronic Properties of Clusters and Nanostructures |
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TEXAS,
UNIVERSITY OF |
Niu |
Transport
and Collective Properties of Diluted Magnetic Semiconductor Multilayers and
Nanostructures |
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VANDERBILT
UNIVERSITY |
Cummings |
Integrated
Multiscale Modeling of Molecular Computing Devices |
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WASHINGTON,
UNIVERSITY OF |
Rehr |
Quantitative
X-ray Spectroscopy Theory |
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WASHINGTON,
UNIVERSITY OF |
Rehr |
CMSN
- Excited State Electronic Structure and Response Functions
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WILLIAM AND
MARY, COLLEGE OF |
Krakauer |
CMSN
- Predictive Capability for Strongly Correlated Systems |
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WISCONSIN,
UNIVERSITY OF |
Saldin |
Electron
Scattering from Surfaces |
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