Examples of using Quantum cryptography in English and their translations into Bulgarian
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Why quantum cryptography is important.
You really should read Quantum Cryptography.
Bypassing military-grade quantum cryptography.
This makes quantum cryptography breakable and violates Heisenberg's uncertainty principle.
We would have a whole new branch on quantum cryptography.
Efforts are being made to develop quantum cryptography, which will allow guaranteed secure transmission of information.
Designed or modified to use or perform"quantum cryptography";
Efforts are being made to more fully develop quantum cryptography, which will theoretically allow guaranteed secure transmission of information.
Quantum cryptography technology must shift its focus to quantum transmission of information if it's going to become significantly more secure than existing cryptography techniques.
So far with the commercial quantum cryptography systems- HACKED|.
In quantum cryptography, encryption keys can be encoded into the quantum states of entangled photons to create a perfectly secure method of communication.
Such cyclic operations could help be useful in nigh-unhackable quantum cryptography, one of the main potential future applications of superposition and entanglement.
Using quantum cryptography, two users can exchange the very large numbers known as keys, which secure data, without anyone able to break the key exchange system.
This experiment was a crucial test for a budding technology called quantum cryptography, which uses quantum particles like photons to send secure information.
While quantum cryptography holds some promise if the problems of quantum transmission can be solved, I doubt the same holds true for generalised quantum computing.
While the problem of noise is a serious challenge in the implementation of quantum computers,it isn't so in quantum cryptography, where people are dealing with single qubits, for single qubits can remain isolated from the environment for significant amount of time.
Quantum cryptography, also called quantum encryption, applies principles of quantum mechanics to encrypt messages in a way that it is never read by anyone outside of the intended recipient.
Quantum cryptography, also termed quantum encryption, applies these principals of quantum mechanics to encrypt messages in a way that a message is never read by anyone outside of the intended recipient.
Ironically, their paper laid the foundation for what today is called the EPR(Einstein-Podolsky-Rosen) paradox,a paradox that defines this immediate communication of quantum entanglement- an integral part of some of the world's most cutting-edge technologies, like quantum cryptography.
For example, it shows that quantum cryptography should work- meaning an intruder can't spy on your communications without destroying the data.
In addition, and this could scarcely have been predicted even as recently as the mid-1990s, several years after Bell's death, many of the concepts studied by Bell and those who developed his work have formed the basis of the new subject area of quantum information theory,which includes such topics as quantum computing and quantum cryptography.
Neither quantum computers nor quantum cryptography will become prevalent technologies without memory systems able to manipulate quantum information easily and effectively.
How and when quantum computers can break public key cryptography.
Micius was launched to let scientists test several technological building blocks for quantum feats involving entanglement, cryptography, and teleportation.
Micius was launched to allow scientists to test various technological building blocks for quantum feats including entanglement, cryptography, and teleportation.
Earlier, China launched the world's first quantum communications satellite,which uses quantum entanglement for cryptography.