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Join the University of Birmingham for groundbreaking PhD research to make 6G possible! Future radio communication systems (6G and beyond) will use frequencies above 100 GHz to achieve bit rates
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one of the following scientific fields: quantum transport in nanostructures,semiconductor technology, or THz spectroscopy Good communication skills and the spirit to work in an interdisciplinary team
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, to interact with colleagues with different backgrounds (physics and engineering) and from different disciplines (i.e., electromagnetism, RF communications, material science). Details of the project will be
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the Vienna Doctoral School in Physics (VDSP), a vibrant community of over 100 quantum scientists on site and around 300 researchers in Vienna. The Brukner group currently consists of an international team of 9
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) on the topic “Cuprate twisted heterostructures for superconducting quantum circuits” Project Overview: High temperature superconducting complex oxides (La₂₋ₓSrₓCuO₄, YBa₂Cu₃O₇₋ₓ, Bi₂Sr₂CaCu₂O₈₊ₓ) are oxygen rich
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wireless communication systems. The PhD student will carry out specifically the following initial tasks: implementation, and calibration of the microscopy system; electromagnetic modelling of the near-field
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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
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Home EMA The European Magnetism Association Executive Board General Council Documents Membership EMA news Communication Social Networks Mailing Event Dissemination Rules All news EMA editorials
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] method within the MiMiC multiscale simulation framework Develop and integrate a communication interface between quantum computers (via Qiskit) and classical HPC resources Validate the QCS-MiMiC
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Organizational Unit: Quantum and Nanotechnologies Classification: RO Tenure: Term Duration: 2 years Language Requirements: English Work arrangements: Due to the nature of the work and operational requirements