Sort by
Refine Your Search
-
Listed
-
Category
-
Field
-
camera technology and multiplexed readout systems for quantum information science applications. In this role, you will join a multidisciplinary team spanning several Argonne divisions and contribute
-
, quantum information science, and artificial intelligence for science. Position Requirements Basic Qualifications • Ph.D. in materials science, physics, chemistry, materials engineering, or a closely related
-
collaborative, multidisciplinary environment that brings together expertise in quantum information science, computer systems, networking, high-performance computing, and scientific applications. The scientist
-
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
-
quantum labs. The postdoc will work with other team members and collaborators to study quantum physics and perform local quantum experiments. The successful candidate will be part of a highly collaborative
-
program dedicated to uncovering the fundamental properties, structures, and dynamics that govern quantum materials. The group maintains a comprehensive suite of crystal growth and synthesis facilities
-
the performance of assigned staff; recommends professional development, salary actions, and promotions Play a key role in the recruitment and selection of high-quality staff Report on research progress and new
-
computational research using and developing codes for high-performance platforms Work in collaboration with experimental group to interpret and contribute to designing experiments Think and work independently and
-
in experimental physics and superconducting device development, with a focus on advancing multipixel single-photon camera technology and multiplexed readout for quantum information science applications
-
information science and light–matter engineering, while engaging with CNM’s cleanroom and characterization capabilities, APS ultrafast and nanoprobe X-ray beamlines, MSD’s THz initiatives, and Q-NEXT’s national quantum