Examples of using Quantum computers in English and their translations into German
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Qcl-- A language for quantum computers.
Optical quantum computers are a source of hope for tomorrow's computer technology.
Qcl-- A language for quantum computers. Bug 162060.
The intrinsic angular momentum of electrons(spin) could be used to store information in future quantum computers.
Weissbaum argued that even the most optimisticphysicists do not expect universal quantum computers in a ten, fifteen year timeframe.
In order to be able to operate, the quantum computers must exchange these pieces of information between their individual components.
Their studies, done in the 1970s and 1980s, could one day have practical relevance for novel materials, data storage, and quantum computers.
Possible tasks for future quantum computers include optimisation problems such as calculating the shortest route for couriers.
In particular, industries listed above should not waste anytime in protecting themselves against quantum attacks threatened by quantum computers.
According to theoretical studies, quantum computers will be able to solve certain problems in much less time than conventional computers. .
This not only opens the door to denser computer storage devices,but could also lay the foundation for constructing quantum computers,” says Wulfhekel.
At the moment there are no practicable quantum computers, but they will arrive, and IT security manufacturers should be prepared for this.
In this context, it was possible for the first time to couple three or four qubits with one another,which is considered an important step on the way to real quantum computers.
Decoherence is a significant problem for the realization of quantum computers, as it impedes the superposition of different states of qubits.
Quantum computers are being developed by teams working not only at universities but also at Google, IBM, Microsoft and D-Wave, a start-up company.
Also, Markus once again curated the Emerging Technology track,this time with cool talks on machine learning, quantum computers and autonomous driving.
Weissbaum asked the question: Suppose, in the foreseeable future, quantum computers with at least 64 qubits will be available: What problems will they solve?
They used abstract mathematical methods to make a number of concrete predictions tocould be important for future electronics and quantum computers.
Scientists today use simulations of this kind to develop algorithms for future quantum computers andto test them on relatively large quantum computers.
This makes it the first universally recognized and deployable procedure for digitalsignatures that will withstand the calculating power of quantum computers.
Technologies such as quantum computers can be designed only on the basis of known, clearly defined and simple interactions between individual components.
This field of research is undergoing rapid development andpromises revolutionary new technologies like quantum computers- with far-reaching economic and social consequences.
Various standardisation committees(such as NIST) have already recognised the issue and called for the development of a new,efficient generation of public-key cryptography that will resist quantum computers.
In universal quantum computers which physicists are trying to develop, the aim is to process information extremely quickly using the quantum states of particles.
The Technische Universität Darmstadt and genua have taken up the challenge this presents anddeveloped a marketable signature procedure that can resist quantum computers.
Technologies such as quantum communication or quantum computers open up completely new perspectives such as in principle tap-proof data exchange or the instantaneous calculation of complex problems.
On two consecutive days, they will get insights into a future after the big wave of digitisation and influenced by artificial intelligence,smart algorithms and new quantum computers.
Quantum computers are based on the quantum physical properties of atomic systems and could, at least in theory, solve numerous computing tasks many times faster than conventional computers. .
Both fields of research areconsidered very promising with regard to the realization of quantum computers with high computing power and extremely secure data transfers as well as applications in data processing.