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one or more of the following theories/methods: - wave-packet quantum dynamics (e.g., AIMS or MCTDH programs) - mixed quantum-classical dynamics, such as non-adiabatic MD (e.g., SHARC program) - density
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electronic states Experience with one or more of the following theories/methods: - wave-packet quantum dynamics (e.g., AIMS or MCTDH programs) - mixed quantum-classical dynamics, such as non-adiabatic MD (e.g
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DTU Tenure Track Researcher in Low-Noise Supercontinuum Lasers and Supercontinuum Laser based Opt...
, based on gas-filled hollow-core fibers, silica and soft-glass fibers, such as fluoride and chalcogenide fibers, that we make in-house. Specifically you will design, develop, and characterize low-noise
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The Department of Environmental Science, Aarhus University, invites applications for a 2-year post doc position offering applicants an exciting opportunity to join a European research project on
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, dynamic, and internationally recognized multi-disciplinary research environment within the section of “Environmental Biomonitoring” research group. There will be access to state-of-the-art laboratory
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Fully Funded three-year PhD in multi-level material cycles and market dynamics, in the MSCA Doctoral Network QuiVal , where we learn, ideate and reimagine real estate value and valuation practices by
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quantum noise measurements are a plus. The second experimental project aims at the development of quantum enhanced methods for biomagnetic and conductivity sensing surpassing conventional diagnostic
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display intricate spatiotemporal dynamics that encode rich informational content. However, analyzing such interactions remains challenging due to the high dimensionality, nonlinearity, and noise inherent in
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that regulate cognitive functions. These functional brain networks display intricate spatiotemporal dynamics that encode rich informational content. However, analyzing such interactions remains challenging due
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No. 101227010 , at DTU Electro, the Technical University of Denmark, we are seeking a candidate for a PhD position to research novel noise characterization techniques for SiC optical frequency combs targeting