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Field
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. This work is part of European Union’s Quantera Program project “MQSens: Quantum Sensing with Nonclassical Mechanical Oscillators”, where opto-/electromechanics is utilized to explore how quantum protocols can
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system, photonic and quantum components originating from different technologies. This development will pave the way for new generations of high‑performance hybrid systems that address the growing needs
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at this Level Education/Training: PhD (theoretical nuclear/high-energy physics, quantum information science, lattice gauge theories, quantum many-body dynamics) Experience: Preferred--computational experience in
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Theory , condensed matter theory, theoretical physics, quantum photonic theory, AMO theory , Physics , theoretical condensed matter physics , Theoretical condensed matter physics; high energy physics
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group in electro-optic and optical nonlinear shaping of quantum light pulses, quantum communication, mid-infrared quantum optics and beyond. The employment will be within the project „High-dimensional
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microscopes Perform data analysis and interpretation Work with others to maintain a high level of scientific productivity Present research and publish scientific results in peer-reviewed journals in a timely
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-envelope phase/offset, balanced homodyne detection; keywords in theory includes: relativistic quantum information science, quantum field theory, quantum optics, quantum fluctuations of the vacuum, Unruh
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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
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Information Our group invites applications to fill one postdoctoral position in computational study of high-energy-density plasma. The starting date is negotiable. The appointment is initially for two years
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by ARPES, pursue scalable wafer-scale moiré epitaxy, develop epitaxial superconductors for quantum computing and integrate machine learning for automated high-throughput MBE. We are particularly