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theoretical and experimental tools to control the magnon dissipation rate using feedback protocols, thereby enabling the continued development, deployment, and use of quantum computing hardware, in alignment
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Materials) group at IEMN will develop innovative bioelectronic platforms enabling the electrical interfacing and functional monitoring of neurocompetent intestinal tissues through advanced micro- and
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/metal phase transition during the optical control of PCM materials (primarily GeTe-type compounds). As part of the OPALE project, we are offering an 11-month postdoctoral research position to tackle
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will perform collaborative research toward realizing new control schemes for fluxonium circuits. You will get to contribute to diverse aspects of the experimental effort, both technical (drawing and
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has established several direct partnerships with major players in the micro- and nanoelectronics industry, including STMicroelectronics in Crolles, France, and Applied Materials in Santa Clara, USA. The
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imaging setups, XRF scanners, micro-XRF, and synchrotron XANES), as well as guidance at the intersection of paleontology, biology, and physical chemistry. Where to apply Website https://emploi.cnrs.fr
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, acoustics, micro- and nanotechnology. We offer reservoir computing measurement setup, high frequency NEMS characterization platform, numerical simulators, and multiphysics environment. The recruited Postdoc
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micro-fabrication, and will consist in thin lines operating in DC conditions. The devices will be characterized by low temperature measurements in a dilution refrigerator and as a function of temperature
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participate in the design, fabrication, and optimization of van der Waals heterostructures and related electronic devices. The work will involve micro- and nanofabrication techniques as well as the assembly
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four main objectives: - Design and fabricate foam-bonded granular materials, by controlling formulation parameters, shaping processes, and binder solidification. - Characterize the microstructure