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Field
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quantum chemical methods and machine learning; developing quantum algorithms for computational chemistry on quantum computers; and applying existing and new computational methods to study multiscale
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publications, conference presentations, and the supervision of junior researchers. Job requirements PhD in physics, biomedical engineering, electrical engineering, medical physics, or a closely related field
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astrophysics is considered as an asset Proficiency in computational methods, programming (e.g., Python,..) and data analysis Mentoring of less experienced team members (i.e. students) Ph.D. degree in nuclear
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the development and operation of superconducting qubits. You will be working closely with PhD students and other postdoctoral researchers and will be able to benefit from the expertise developed there and
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proposals in the field of theoretical computer science, in general, and quantum information and computation, in particular, and contribute to attracting external funding. You will assist in the supervision
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, as well as a population of about 3,600 passionate students, the Faculty of Applied Sciences is an inspiring scientific ecosystem. Focusing on key enabling technologies, such as quantum- and
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software control. The candidate will use these platforms to advance research in optics, spin physics, and related areas of quantum science, while collaborating with faculty, researchers, and students across
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are developing technology to robotically manufacture robust optical circuits for quantum technology and beyond. We provided the circuit boards for the AQuRA optical lattice clock and are offering
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a diverse international team of postdoctoral researchers, PhD candidates and technicians with complementary expertise in modelling, molecular biology, genomics, microbial physiology, synthetic biology
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their absolute ground states at temperatures around 1 microKelvin, and explored their interactions and collisions. We are now developing the use of these and other ultracold molecules for quantum science. Further