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Field
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The Quantum Materials group at Argonne National Laboratory, in collaboration with the Argonne Quantum Foundry, a key component of Q-NEXT, seeks a highly motivated postdoctoral candidate to spearhead
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for next-generation information processing, microelectronics, wireless communication, and quantum information science. Key Responsibilities: Develop terahertz coplanar resonators, including design
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physics), device synthesis, and quantum materials (including optics, photonics, spectroscopy, and optically active point defects). Also, familiarity with nanofabrication (optical and e-beam lithography
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photonic architectures based on phase control, amplitude modulation, optical switching, and quantum light shaping. Design and characterize electro-optic and thermo-optic control schemes for programmable
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experiments on the group's custom-built optical microscope (30%); 2. Develop sample-integration strategies that localize biomolecules near quantum sensors, such as supported lipid bilayers, thin atomic-layer
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photonic quantum devices for a heterogeneous quantum network, including but not limited to superconducting qubits, microwave-optical quantum transducers, etc. The postdocs will design the devices, fabricate
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field and ideally have a strong background in experimental quantum optics or atomic physics. Previous experience in the field ultracold atoms will be highly desirable. Candidates will be expected
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field and ideally have a strong background in experimental quantum optics or atomic physics. Previous experience in the field ultracold atoms will be highly desirable. Candidates will be expected
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and quantum cybersecurity applications? Can we scale up multiphoton platforms by using integrated optics, quantum-dot single-photon sources and customized two-dimensional nonlinear materials
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Astronomy is home to internationally leading research in applied physics, astronomy, atomic physics, quantum optics, condensed matter physics, high energy physics, nuclear physics, and related areas. We offer