Examples of using Quantum computers in English and their translations into Swedish
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Optical lattices use lasers to separate rubidium atoms(red) for use as information"bits" in neutral-atom quantum processors-- prototype devices which designers are trying to develop into full-fledged quantum computers.
Quantum computers also derive their power from the fact that qubits can be"entangled," so their properties are linked,
And when the quantum computers in each satellite link up… He will use that network to basically emit a series of dark matter bursts.
Besides the medical applications, cadmium selenide quantum dots hold potential in LEDS, quantum computers, solar cells and much more.
A series of dark matter bursts. And when the quantum computers in each satellite link up… He will use that network to basically emit.
Quantum computers are computers that exploit the weird properties of matter at extremely small scales.
spectrum of R&D activity, from less sophisticated powders all the way through to highly complex quantum computers.
One thing even sceptics have to acknowledge is that the first ones to commercially sell quantum computers as cloud services are here.
The physicists consider these fast moving ions to be potential candidates for future quantum computers.
as the building blocks for the development of future devices such as quantum computers.
The quantum computers of tomorrow might use photons,
these algorithms can be replaced before quantum computers become reality.
Certainly, quantum computers can be more powerful in the long term,
Gunnar Björk discuss quantum computers and how they potentially can compromise the security of cryptography on internet.
Josephson junctions are common components in superconducting electronics, quantum computers, and are also used extensively in superconducting quantum interference devices(SQUIDs),
Quantum computers are a radically different type of computer- not bound to the binary nature of traditional computers- with the potential to perform advanced computations that are not possible today.
Many experts believe that a full-blown quantum computer could perform calculations that would be hopelessly time consuming on classical computers, but so far, quantum computers have proven devilishly hard to build.
a rapid approach to investigating a long-standing problem in the design of ion-trap quantum computers.
would offer strong evidence that quantum computers can do things that classical computers can't.
electronics, quantum computers, molecular nanostructures,