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microwave resonator design, characterization, and RF/microwave measurement techniques Electromagnetic simulation experience (e.g., Sonnet, Ansys HFSS/Lumerical, or similar tools) Experience with data
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, as well as knowledge of beam dynamics codes (e.g., Bmad, Xsuite, RF-Track, ..) is required. •Knowledge of electromagnetic design or analysis codes (e.g., HFSS, CST Microwave Studio, etc.) is an
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electromagnetism and microwave test bench design are required. For the intended objectives, a strong background in RF components and circuits, particularly non-linear ones, is also highly valued. Fluency in English
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to specifically highlight in their applications how they fulfil the essential criteria for the post, listed below. Key Duties & Responsibilities The post holder is required to: Develop RF circuits and microwave
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, quantum engineering, or related areas. o Hands-on experience with ultracold atoms, trapped ions, or optical trapping techniques. o Expertise in laser systems, RF/microwave control, and/or quantum
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are seeking a highly-motivated and ambitious researcher with a strong background and experience in RF/microwave engineering, additive manufacturing, and AI modelling to work on cutting-edge research in
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at least one of the following: superconducting device fabrication, cryogenic transport measurements, or RF/microwave measurements Preferred qualifications include: Cleanroom nanofabrication experience (e
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 2 months ago
spectroscopy, physics and chemistry with chip-scale atomic and molecular vapor cells and photonic integration/packaging interfaces; 2. Supporting DC, RF, and microwave electronics and optoelectronics, including
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ultracold gases, including the setup and alignment of magneto-optical traps, optical trapping and optical lattices, internal state control with RF and microwave fields and advanced data acquisition techniques
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, combined with the existence of controllable long-range dipole-dipole interactions, long trap lifetimes and strong coupling to electric and microwave fields. The experiments are complex and highly technical