Examples of using Quantum systems in English and their translations into German
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Theoretical description and understanding of quantum systems.
It shows the correlation between quantum systems significantly more strictly, than it can do all the classic correlation.
Entanglement and topological order in complex quantum systems.
The advantage of this system over other quantum systems in technical use lies in its comparatively easy preparation and manipulation.
Nano-archimedes is a free package for the simulation of quantum systems.
The entanglement principle means the following: When two quantum systems are interacting they have to be considered as one complete system from then on.
He then joined HP Labs as director of its Information and Quantum Systems Lab.
Special quantum systems that promise to solve certain tasks more quickly than a classical computer, however, are already playing an important role in science.
Probabilistic evolution is intrinsic to microcosmic or quantum systems.
As a Humboldt Professor,he will in future head the Dahlem Center for Complex Quantum Systems which is currently being established at the Freie Universität Berlin.
The ability to cause certain physical events on interactions with other quantum systems.
The challenge of understanding thecomplex physical properties of highly correlated quantum systems has stimulated intense work on generic microscopic model Hamiltonians.
At the Freie Universität Berlin he is to head thenewly founded Dahlem Center for Complex Quantum Systems.
Another strong focus at the ITP is the physics of complex systems, in particular complex quantum systems, systems from materials science and biological systems, .
Current research ranges from tests of fundamentalphysics laws to nanoscopy of condensed matter quantum systems.
Thus the correlations among the particles can be correctly determined,and also in other quantum systems if certain modifications are carried out, according to the scientists.
With their high reproducibility and tunability,the Heidelberg experiments open the door for the simulation of a large number of quantum systems.
These methods have not only given rise tovery powerful numerical algorithms for studying quantum systems, but also have application in other branches of physics.
The project's aim isto assemble many-body systems from familiar components and thus simulate the properties of complex quantum systems.
In the simplest case, the simulated quantum computers represent ideal quantum systems that behave exactly as predicted by the rules of quantum mechanics.
They have thereby created a tool which they can use to investigate the collective behaviour of these quantum systems in more detail.
Gerhard Rempe offered someinsight into the thought world of physicists who deal with quantum systems day in and day out.
While quantum information is very error-prone, it is also difficult tocorrect errors without introducing new errors in quantum systems.
This seemingly simple arrangement makes it possible to study"very,very" fascinating properties of quantum systems in their purest form, emphasizes Gerhard Rempe.
A prototype of a quantum magnetometer will alsobe demonstrated on which the vistitors will be able to diretly experience the influence of magnetic fields on spin-based quantum systems.
A new CRC, this one in the field of physics, will explore in experiments and theory isolated quantum systems under extreme conditions.
TQuant's visionary goal is to revolutionize medical imaging and diagnostics by advancing quantum sensor technology using novel robust quantum systems.
The HGSFP provides an excellent and flexible education in the fields of fundamental interactions and cosmology,quantum dynamics and complex quantum systems as well as astrophysics and cosmic physics.