Intensive Week: Advanced Topics in Photonics and Quantum Optics (E) - physics737 Course Intensive Week: Advanced Topics in Photonics and Quantum Optics (E) Course No. physics737 Category Type Language Teaching hours CP Semester Elective Combined lecture, seminar, lab course English 3 4 WT/ST Requirements for Participation: Preparation: Fundamentals of optics, fundamentals of quantum mechanics Form of Testing and Examination: Seminar or oral examination Length of Course: 1 - 2 weeks Aims of the Course: The intensive course will convey the basics of a recent topic in photonics or quantum optics in theory and experiments.
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Lecture on Advanced Topics in Quantum Optics (E) - physics738 Course Lecture on Advanced Topics in Quantum Optics (E) Course No. physics738 Category Type Language Teaching hours CP Semester Elective Lecture with exercises English 2+1 4 WT/ST Requirements for Participation: Preparation: Fundamentals of Quantum Mechanics, Atomic Physics Form of Testing and Examination: Requirements for the examination (written or oral): successful work within the exercises Length of Course: 1 semester Aims of the Course: The goal of the course is to introduce the students to a special field of research in quantum optics.
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Platforms for Quantum Technologies (E) - physics743 Course Platforms for Quantum Technologies (E) Course No. physics743 Category Type Language Teaching hours CP Semester Elective Lecture with exercises English 2 weeks fulltime 5 WT/ST Requirements for Participation: Preparation: Major courses of the 1st MSc term, for example, “Advanced Atomic, Molecular and Optical Physics”, “Quantum Optics”, “Advanced Quantum Theory”, “Theoretical Condensed Matter Physics” Form of Testing and Examination: written exam Length of Course: 2 weeks Aims of the Course: Students receive an introduction into quantum technologies both theoretically and experimentally.
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Random Walks and Diffusion (T) - physics7502 Course Random Walks and Diffusion (T) Course No. physics7502 Category Type Language Teaching hours CP Semester Elective Lecture with exercises English 1+1 3 ST Requirements for Participation: Preparation: Quantum mechanics and Thermodynamics Form of Testing and Examination: Requirements for the (written or oral) examination: Successful work within the exercises Length of Course: 1 semester Aims of the Course: The aim of the course is to introduce the student to random processes and their application to diffusion phenomena Contents of the Course: Basics of probability theory, Master equation and Langevin equation, Law of large numbers and Central Limit Theorem, First passage problems, Large scale dynamics, Dynamical scaling.
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Selected Topics in Modern Condensed Matter Theory (T) - physics7503 Course Selected Topics in Modern Condensed Matter Theory (T) Course No. physics7503 Category Type Language Teaching hours CP Semester Elective Lecture with exercises English 3+2 7 WT Requirements for Participation: Preparation: Introductory Condensed Matter Theory
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Theory of Superconductivity and Superfluidity (T) - physics7504 Course Theory of Superconductivity and Superfluidity (T) Course No. physics7504 Category Type Language Teaching hours CP Semester Elective Lecture with exercises English 2+1 5 WT/ST Requirements for Participation: Preparation: Quantum Mechanics, Thermodynamics and Statistics, Quantum Field Theory Form of Testing and Examination: Requirements for the (written or oral) examination: Successful participation in the exercises Length of Course: 1 semester Aims of the Course: The goal of the course is to introduce students to the theory of superconductivity and superfluidity.
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High performance computing: Modern computer architectures and applications in the physical science (T) - physics7505 Course High performance computing: Modern computer architectures and applications in the physical science (T) Course No. physics7505 Category Type Language Teaching hours CP Semester Elective Lecture English 2 3 WT/ST Requirements for Participation: Knowledge of a modern programming language like C/C++ Preparation: Form of Testing and Examination: oral examination Length of Course: 1 semester Aims of the Course: Understanding principles of modern computer architectures and their usage and programming for scientific problems Contents of the Course: Computer architectures and system components (CPU, memory, network)
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Quark Distributions Functions (T) - physics7506 Course Quark Distributions Functions (T) Course No. physics7506 Category Type Language Teaching hours CP Semester Elective Lecture English 2 3 WT Requirements for Participation: Preparation: Quantum Field Theory (physics755 or equivalent) Form of Testing and Examination: oral examination Length of Course: 1 semester Aims of the Course: By the end of the course, the student should be able to understand the formal parton model, renormalization of parton distributions, and current attempts to compute them on the lattice.
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Theory of Quantum Magnetism (T) - physics7507 Course Theory of Quantum Magnetism (T) Course No. physics7507 Category Type Language Teaching hours CP Semester Elective Lecture with exercises English 2+1 4 ST Requirements for Participation: Preparation: Quantum mechanics, Thermodynamics and Statistics, Quantum Field Theory Form of Testing and Examination: (1) form of examination: written or oral
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Quantum Computing (T) - physics7508 Course Quantum Computing (T) Course No. physics7508 Category Type Language Teaching hours CP Semester Elective Lecture with exercises English 3+2 7 WT/ST Requirements for Participation: Preparation: Theoretical courses at the Bachelor degree level Form of Testing and Examination: written / oral examination Length of Course: 1 semester Aims of the Course: Understand the theory of quantum computing and apply it to existing hardware.
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