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transistors to solve some of society’s most pressing computational challenges. Silicon-based approaches to quantum information processing offer advantages for scaling such as high qubit density, record qubit
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Application Deadline: Applications accepted all year round How to apply: https://uom.link/pgr-apply-2526 UK Only This 3.5-year PhD studentship is open to Home (UK) applicants. The successful
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range. GaN is a wide bandgap seminconductor with a strong n-type High Electron Mobility Transistor technology, but the completementary p-type transistor is still early investigation. P-type GaN
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of components at cryogenic temperature and the use of simplified transistor models such as s-EKV or ACM. Project description: Industrially fabricated devices based on the fully-depleted silicon-on-insulator (FD
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microfluidic system for the detection of various relevant analytes in saliva. Sensors will be made of electrochemical cells and transistors on soft and flexible substrates. Their fabrication will be processed
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architectures are required, such as those inspired by the organization of the human brain that utilize novel materials. Ferroelectric Field-Effect Transistors (FeFETs) exemplify the latter, regarded as a pivotal
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the billions of transistors working to enable you to read this advert. Yet, quantum phenomena typically dominate only at the “small” scale of atoms and molecules. Imagine extending effects like quantum
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Job description Quantum physics has revolutionized the way we live—just think of the billions of transistors working to enable you to read this advert. Yet, quantum phenomena typically dominate only