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experience in: Design of integrated photonic devices Linear and nonlinear photonic device testing Finite element analysis (FEA) Micro- and nano-fabrication Knowledge in quantum optics/physics is a strong plus
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nonlinear MEMS-based oscillators driven by storage-ring radio-frequency (RF) signals to enable advanced manipulation of X-ray pulses. Background information on the project can be found in the publications
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work with Professor Peter Hintz on problems in the areas of geometric partial differential equations and general relativity. These include: linear and nonlinear stability problems and scattering theory
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research spans the following broad areas: Complex systems: Nonlinear dynamics and Data assimilation, Statistical physics, Fluid dynamics and turbulence, Condensed matter physics, Biological Physics; Space
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behavior and nonlinear dynamics. The position also includes mentoring graduate and undergraduate researchers and contributing to sponsored research reporting. This is a full-time, fixed-term postdoctoral
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, including phase transitions, nonlinear dynamics, morphogenesis, evolution, and chromatin physics. We tackle these questions from fresh angles, using everything from physics and machine learning to long-term
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the Terahertz to the ultraviolet and continuously implement new experimental concepts and measurement capabilities. Our research is complemented by nonlinear optical microscopy, cryogenic experiments, atomic
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for PDE-based models and numerical methods. Research areas within the group include: • Analysis and numerics of nonlinear PDEs • Development and analysis of solver and coupling methods • Mathematical
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devices exploiting the nonlinear kinetic inductance of thin superconducting films, including microwave resonators for frequency-domain multiplexed readout of single photon detectors (kinetic inductance
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linear programming, mixed-integer programming, nonlinear optimization, stochastic optimization, robust optimization, or multi-objective optimization. Experience integrating machine learning or data-driven