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films, including microwave resonators for frequency-domain multiplexed readout of single-photon detectors using kinetic inductance current sensors Develop and characterize superconducting nanowire single
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. Ability to model Argonne’s core values of impact, safety, respect, integrity, and teamwork Preferred skills: Microwave circuit design, terahertz optics, and their characterization. Knowledge about near
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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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chemistry, microfluidic reactions, reaction scale-up, calorimetry, microwave reactions; AI/ML; design of experiments, in-line analytics. Ability to communicate effectively and on a timely basis with the
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physics, engineering, or a closely related field Experience in experimental physics/engineering, nanofabrication, quantum information science, and/or microwave and superconducting device characterization
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effective troubleshooting ability are required Ability to produce scientific reports, present ideas and proposals to scientists and engineers, and maintain proficiency in written and oral
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of Transition Edge Sensor (TES) bolometers for studies of the Cosmic Microwave Background (CMB), while also supporting the exploration of novel applications for superconducting detectors. As a member of Argonne’s
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devices exploiting the nonlinear kinetic inductance of thin superconducting films, including microwave resonators for frequency-domain multiplexed readout of single photon detectors (kinetic inductance
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, for on-chip magnon quantum sensing Position Requirements Superconducting resonator design, simulation and nanofabrication. Microwave circuit design and characterization, including vector network analyzer
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into photonic or electronic systems Hands-on experience with SEM, AFM, TEM, and other characterization tools Demonstrated ability to work independently and collaboratively in a multidisciplinary environment