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design, fabricate, and test high efficiency superconducting nanowire single-photon detectors (SNSPDs) and detector arrays optimized for mid-infrared spectroscopy. The goal of this work is to develop both
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Position overview Position title: Postdoctoral Scholar Salary range: Annual Starting Salary: See table 23 for the position salary range based on experience $69,073 - $82,836. Percent time: 100
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Max Planck Institute for Multidisciplinary Sciences, Göttingen | Gottingen, Niedersachsen | Germany | 13 days ago
seek a qualified postdoctoral researcher to design, fabricate, and test high efficiency superconducting nanowire single-photon detectors (SNSPDs) and detector arrays optimized for mid-infrared
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sensitivity of OECT is crucial. Multi-variate data analysis on co-integrated multi-materials micro-sensor array will be performed. Although the methodology is generic and low cost, the main challenge will lie
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on piezoelectric substrates. By patterning the magnetic layer, we aim to create a new type of phased-array shifter designed to lower the energy consumption of RF technologies. In addition, we will work toward
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Salary range: Annual Starting Salary: See table 23 for the position salary range based on experience $69,073 - $82,836. Percent time: 100 Anticipated start: November 1, 2025. Exact start date
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supervision: The workplan will be carried out in the Laboratório de Micro Manufactaring and Systems Integration Laboratory of CMEMS- Center of MicroElectroMechanical Systems of Schooll of Engineering of
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studying micro-level dynamics of civil conflict and political violence. The group’s research is structured around four main clusters: Interventions, Contested Resources, Armed Politics and Conflict and Space
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studying micro-level dynamics of civil conflict and political violence. The group’s research is structured around four main clusters: Interventions, Contested Resources, Armed Politics and Conflict and Space
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therapy, micro-dosimetry, scintillating dosimetry, ultra-high dose-rate dosimetry for protons and/or electrons, accuracy in radiation measurement, AI-integrated high-resolution imaging systems, and the