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Research

IRG-1: Spin-Photonic Nanostructures

Creating and studying a portfolio of defect-engineered spin-photonic nanostructures to inform, expand, and inspirefuture technological capabilities

IRG-1 Unifying Core Objectives:

(1) Design and develop new nanoscale materials exhibiting novel manifestations of coupled spin and optical properties.

(2) Use-inspired basic research that will advance the characterization, modeling, and understanding of geometric and electronic structure/function relationships in nanoscale spin-photonic materials.

(3) Impact current, emerging, and future technologies by developing materials with unprecedented properties that define new capabilities and opportunities.

People

Brandi Cossairt

ChemistryIRG 1Research Faculty

James DeYoreo

ChemistryMaterials Science and EngineeringIRG 1Research Faculty

Scott Dunham

Electrical EngineeringAI CoreIRG 1Research Faculty

Kai-Mei Fu

Electrical EngineeringPhysicsIRG 1IRG 1 Co-LeadIRG Leaders

Juan Carlos Idrobo

Materials Science and EngineeringIRG 1IRG 2Research Faculty

Xiaosong Li

ChemistryIRG 1Research Faculty

Peter Pauzauskie

Materials Science and EngineeringIRG 1Research Faculty

Stefan Stoll

ChemistryIRG 1Research Faculty

Dianne Xiao

ChemistryIRG 1Research Faculty

Daniel Gamelin

ChemistryDirectorIRG 1IRG 1 Co-Lead

Recent Publications

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  1. Computational Skills Training for Undergraduate Researchers in Molecular Engineering

    Kristen Finch, Ryan Beck, Xiaosong Li, Nam Pho, and Xiao Zhu

  2. Surfactant-Assisted Phase Selective Sonochemical Synthesis of Sodium Yttrium Fluoride Anoparticles

    Baum, Fabio, Lars Forberger, Alexander B Bard, Rachel Gariepy, Peter J Pauzauskie, and Lilo D Pozzo

  3. Rapid, in Situ Neutralization of Nitrogen- and Silicon-Vacancy Centers in Diamond Using Above-Band Gap Optical Excitation

    Pederson, Christian, Nicholas S Yama, Lane Beale, Matthew Markham, Mark E Turiansky, and Kai-Mei C Fu

  4. Multiscale Modeling and Optimization of Group V Doping and Compensation in CdSexTe1– x

    Xiang, Xiaofeng, Aaron Gehrke, Yijun Tong, and Scott T Dunham.