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Alibaba Quantum Laboratory, Alibaba Group Logo
Alibaba Quantum Laboratory, Alibaba Group

Hangzhou, China

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Niels Bohr Institute, Faculty of Science, University of Copenhagen

Cophenhagen, Denmark

Technische Universiteit Delft (TU Delft)

Delft, Netherlands

New York Institute of Technology

Old Westbury, New York

NIST - National Institute of Standards and Technology

Boulder, Colorado

NIST - National Institute of Standards and Technology

Boulder, Colorado

GESTAR II Consortium

Greenbelt, Maryland

Department of Mathematics, University of Utah

Salt Lake City, Utah

National Institute of Standards and Technology (NIST) Logo
National Institute of Standards and Technology (NIST)

Gaithersburg, Maryland

George Mason University

Fairfax, Virginia

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Los Alamos National Laboratory

Los Alamos, New Mexico

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Argonne National Laboratory

Lemont, Illinois

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The Laboratory for Laser Energetics (LLE) at the University of Rochester

New York

Duke University Pratt School of Engineering Duke Quantum Center Logo
Duke University Pratt School of Engineering Duke Quantum Center

Durham, North Carolina

University of Notre Dame, College of Science

Notre Dame, Indiana

Institute for Shock Physics - Washington State University Logo
Institute for Shock Physics - Washington State University

Lemont, Illinois

University of Delaware

Newark, Delaware

Argonne National Laboratory

Lemont, Illinois

University of Oxford

Oxford, United Kingdom

Berkeley Lab

Berkeley, California

Los Alamos National Laboratory

Los Alamos, New Mexico

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Postdoctoral Research—Fusion Impurity Transport
The DIII-D National Fusion Facility in San Diego, CA is the principal magnetically confined fusion experiment in the United States. Its research focus is the science and control of the burning plasma state. General Atomics Scientists at DIII-D, in collaboration with colleagues at the EAST tokamak in Hefei, China, are developing steady state scenarios needed for continuous, high-performance tokamak operation. There is currently an excellent opportunity for a post-doctoral researcher to contribute to these efforts by studying and optimizing impurity transport in the high poloidal-b scenario. Leveraging data from EAST and DIII-D, integrating modeling will be used to validate impurity transport in this regime and devise experiments that demonstrate optimized performance. Both high- a


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