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behavior and spin relaxation of the magnetic adsorbate. Moreover, we will explore all light-induced phenomena key to the optical control of individual spins. This newly gained knowledge will guide the design
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foresee chains up to 5 sites in qubit geometry. We will study the different noise sources that can dephase the qubit and how to protect against these disturbances. We will explore new gate operations
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) Developing machine-learning based exoskeleton controllers to work across tasks 2) Designing and validating new robotic lower-limb prostheses 3) Exploring other high-risk high-reward research areas related
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-world AV–VRU interactions poorly understood. In this PhD role you will focus on employing Virtual Reality technologies to better understand this complex interaction process and explore how external Human
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occupants. The project will also investigate how smart acoustic sensing can enable adaptive control of the built environment. This includes exploring strategies for automatically modifying room acoustic
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to protect against these disturbances. We will explore new gate operations including fusion and braiding which are special qubit operations unique for Majorana bound states. We will study the effect
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Location: Faculty of Science and Faculty of Engineering, University of Nottingham, UK Start Date: 1 October 2026 This PhD offers an exciting opportunity to explore reservoir computing, a new
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international political economy approach which explores how China’s structural power accumulates. What we offer Joining our RTG means becoming part of a dynamic, internationally connected research community
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explore applications of quantum resources in a network setting. Among the research topics are quantum cryptographic algorithms and quantum error-correction. How to apply Your application must include
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modern econometric methods, including panel-data, time-series and causal-inference approaches. Potential dissertation projects may explore: how globalization and international policy competition shape