Sort by
Refine Your Search
-
Country
-
Employer
- Oak Ridge National Laboratory
- Argonne
- Pennsylvania State University
- National Aeronautics and Space Administration (NASA)
- Northeastern University
- Duke University
- Iowa State University
- Princeton University
- University of California, Merced
- University of Central Florida
- University of Florida
- University of North Carolina at Chapel Hill
- Brookhaven National Laboratory
- Cornell University
- Indiana University
- Kennesaw State University
- Rutgers University
- Texas A&M University
- University of Minnesota
- University of Southern California
- Virginia Tech
- APCTP
- Argonne National Laboratory
- Boston University
- Carnegie Mellon University
- Florida State University
- Harvard University
- Institute of Photonic Sciences
- LIGO Laboratory
- Lawrence Berkeley National Laboratory
- Louisiana State University
- National Energy Technology Laboratory (NETL)
- New York University
- Purdue University
- Rice University
- Rochester Institute of Technology
- SUNY at Buffalo
- Stanford University
- Stony Brook University
- The Ohio State University
- The University of Arizona
- The University of South Dakota
- University of Colorado
- University of Houston
- University of Illinois Chicago
- University of Maryland
- University of New Mexico
- University of Oklahoma
- University of Oregon
- University of South Carolina
- University of Washington
- Wayne State University
- Weizmann Inst. of Sci.
- Yale University
- 44 more »
- « less
-
Field
-
five-year mission of the ORNL Quantum Science Center (QSC) to establish a quantum-accelerated computing ecosystem for scientific applications. The successful candidate will develop, test, and evaluate
-
advances the development and application of AI methods for quantum computing, as well as the use of quantum-inspired approaches to enhance AI systems. Artificial intelligence and quantum computing
-
for applications in quantum information science. While focused on this core responsibility, the candidate will be encouraged to explore novel avenues of research that complement and enhance the group’s overall
-
nitrogen-vacancy (NV) diamond quantum magnetometry for high-energy physics experiments. The HEP Division performs cutting-edge research leveraging advanced detector development, high-performance computing
-
data in near-term era quantum computers. Applicants with backgrounds in quantum information or particle physics are both encouraged to apply. Candidates with strong expertise in machine learning, quantum
-
. The postdoc will join an interdisciplinary program that combines quantum sensing instrumentation, surface and interfacial chemistry, and the physics of the target systems, with current directions including
-
microwave and/or optical device measurement and characterization Knowledge of quantum information science Design, fabrication, and measurement of superconducting qubits Research involving microwave-optical
-
information science, quantum optics, quantum many-body systems. This position is a full-time one-year appointment, with the option of renewal for a second year by mutual agreement. The earliest start date is May 1
-
phenomena in low-dimensional systems. The materials studied will include superconductors relevant to quantum information science as well as unconventional and candidate topological superconductors and
-
computing, with a particular emphasis on methods tailored to study nonequilibrium quantum many-body systems. The position offers an exciting opportunity to contribute to cutting-edge research