Examples of using Low-dimensional in English and their translations into German
{-}
-
Colloquial
-
Official
-
Ecclesiastic
-
Medicine
-
Financial
-
Ecclesiastic
-
Political
-
Computer
-
Programming
-
Official/political
-
Political
PHY 709: Electronic Properties of Other Low-Dimensional Systems.
The electronic properties of low-dimensional systems are closely related to their geometric structure.
Quantum effects in charge transport in low-dimensional systems.
Particularly, frustrated or low-dimensional systems with weak order and high entropy promise interesting new properties.
Prof. Patrik Recher'sgroup focusses on the theory of quantum transport in low-dimensional systems.
Electronic Structure and Electronic Properties of Low-Dimensional Systems including Thin Films, Surfaces and Interfaces siehe PHY 700 ff.
Noise in low-dimensional, quantum-mechanical systems, the physics below the standard quantum limit and finally noise and correlations in highly complex systems.
His core subject is geometric topology with a focus on low-dimensional diversity and knot theory.
In particular, he has been interested in low-dimensional meso- and nanoscopic systems with strong correlations, quantum magnetism, and superconductivity.
Experiments on a three-axis spectrometer are used for example for the investigation of spin waves, crystal field excitations, phonons,excitations in low-dimensional systems, quasi-elastic scattering and diffraction of energy analysis.
It is evident now that low-dimensional dynamics, to a large extent initiated by Milnor's work, is a fundamental part of general dynamical systems theory.
This key researcharea deals with basic research on the physics of low-dimensional materials and their hierarchical and hybrid structures.
Bibliography==*"Low-Dimensional Semiconductors: Materials, Physics, Technology, Devices", Oxford University Press 2002, ISBN 0-19-851780-7==External links==* Prof M.J. Kelly, University of Cambridge Department of Engineering:*Publications by Prof. M.J. Kelly==References.
Model reduction aims at simplifying the governing equations by finding low-dimensional models that approximate the full high-dimensional dynamics.
Topical issues are charge, spin, and heat transport, quantum phase transitions, particle real-time dynamics, quantum uctuation, temperature, detuning and decoherence effects,in particular in electronically low-dimensional materials or in geometrically restricted quantum systems/devices.
Robion C. Kirby(1995,mathematics)For his list of problems in low-dimensional topology and his tireless maintenance of it; several generations have been greatly influenced by Kirby's list.
Work is being carried out on exotic superconductors,strongly correlated systems, low-dimensional and frustrated magnetic as well as nanostructured materials.
Based on a model system of colloids,Peter Keim was able to prove that in low-dimensional systems slow but steadily growing fluctuations occur in the distance between particles.
Prof. Dr. Gerhard Abstreiter received the Heinz Maier-Leibnitz Medal in 2006"in honour of his pioneering contributions to modern semiconductor physics,which had a significant impact on our fundamental understanding of low-dimensional semiconductor structures and theirapplication in contemporary microtechnology and nanotechnology, and also in appreciation of his decisive contribution to the success of the Excellence Cluster'Nanosystems Initiative Munich.
Insulating, conducting and ferromagnetic molecular and polymer systems electrical insulators conducting adhesives for electronic applications conducting polymers as electrodes of great stability andlong life in batteries intercalated highly conducting low-dimensional systems electronically conducting liquid crystals molecular semiconductors in thin films for electronic devices(radicals) conductivity in mesomorphic systems molecular and polymer ferromagnets for telecommunication applications bistable systems for data storage magnetism and transparency(or luminescence) spin induced by light.