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excited to recruit postdocs with experience in optics, two-dimensional materials and a strong theoretical background. Applicants should have a Ph.D. in quantum physics, electrical engineering or a related
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are not limited to: Atto-Science, Ultrafast Optics & Nonlinear Optics Photovoltaics, Thermal Photonics & Solar Fuels Optical Sensing & Optoelectronics NanoPhotonics & NanoMechanics Ultracold Quantum Gases
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Application deadline: 01/12/2026 Research theme: Quantum communication, condensed matter, quantum optics How to apply: https://uom.link/pgr-apply-2425 This 3.5 year PhD project is fully funded
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Austrian Academy of Sciences, The Institute for Quantum Optics and Quantum Information Innsbruck (IQOQI-IBK) | Austria | 23 days ago
available1Company/InstituteThe Institute for Quantum Optics and Quantum Information Innsbruck (IQOQI-IBK) CountryAustriaGeofield Contact City Innsbruck Website https://iqoqi.at/en STATUS: EXPIRED X (formerly Twitter
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heterostructures, moiré materials, and spin-based quantum technologies. The laboratory operates state-of-the-art facilities for optical and quantum-optical spectroscopy, cryogenic measurements, nanofabrication, and
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ultrafast transport platforms. Both platforms will be integrated with exfoliated flakes and thin films of frustrated quantum materials and characterized with the lab’s time-resolved optical, THz, and second
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physics Physics » Optics Physics » Quantum mechanics Physics » Other Technology » Nanotechnology Researcher Profile First Stage Researcher (R1) Application Deadline 5 Nov 2026 - 22:59 (UTC) Country Sweden
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10 Oct 2026 Job Information Organisation/Company Delft University of Technology (TU Delft) Research Field Physics » Optics Physics » Quantum mechanics Researcher Profile First Stage Researcher (R1
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condensed matter physics (CMP) , atomic, molecular, and optical (AMO) physics, and quantum information science (QIS) . Current research encompasses a wide range of topics, including strongly correlated and
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https://eprint.iacr.org/2016/971 One of the goals is to achieve Quantum Readout through a long optical fiber, with random challenges in the time-frequency domain (instead of the easier to achieve