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polariton propagation, low-energy switching concepts, few-particle modulation of condensate nonlinearities, integrated polaritonic circuit functions, and coupling of polaritonic states to on-chip detection
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propagation, low-energy switching, few-particle modulation of condensate nonlinearities, integrated polaritonic circuit functions, and coupling of polaritonic states with on-chip detection and readout
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Job Description Fabrication 2D materials-based devices. The main research goals include (1) transistor devices and circuits based on 2D semiconductors and (2) Explore new device structures such as
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Job Description Fabrication 2D materials-based devices. The main research goals include (1) transistor devices and circuits based on 2D semiconductors and (2) Explore new device structures such as
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and computational modelling aspects of the project, extending our work on symmetry-protected quantum states in interacting many-body systems and their implementation in superconducting quantum circuits
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on open-source processor and accelerator architectures. The role focuses on advancing research in integrated circuit (IC) design and electronic design automation (EDA), with particular emphasis on RISC-V
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and computational modelling aspects of the project, extending our work on symmetry-protected quantum states in interacting many-body systems and their implementation in superconducting quantum circuits
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sensing protocols, short-depth quantum circuits, variational algorithms and error-corrected sensing. This is an exciting opportunity to collaborate with leading researchers, build your research profile and
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will contribute to the design, implementation, verification and experimental characterisation of advanced integrated circuits for High Voltage CMOS (HV-CMOS) particle-detector ASICs. The major focus
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Min a PhD degree in relevant fields. The candidate must have relevant experience in topolectrical circuits, topological physics, quantum mechanics, quantum transport and non-Hermitian physics