Examples of using Quantum cryptography in English and their translations into Ukrainian
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Quantum cryptography is one of them.
The Purcell effect can alsobe useful for modeling single-photon sources for quantum cryptography.
In quantum cryptography, Eve may also represent the environment.
Micius was launched last year and successfully used quantum cryptography to send data to Earth back in August.
Quantum cryptography is already used by folks who want extreme security.
Scientists around the world are focusing efforts on quantum cryptography as a way to increase security in the digital world.
Quantum cryptography: Public key distribution and coin tossing".
In recent years,Chinese scientists actively engaged in the study of quantum cryptography, and developments are actively implemented in various spheres.
Quantum cryptography is a method of protection of communications based on the principles of quantum physics.
Researchers have demonstrated sending messages in asecure manner using high dimensional quantum cryptography in realistic city conditions.
It is used in quantum cryptography, in particular, the prospect of creating quantum money.
Other graduates are noted for their contributions to scientific research, including innovations in nuclear power,visual perception and quantum cryptography.
Laser sources for quantum cryptography, including single photon sources and ultrashort pulse lasers.
For the first time, researchers have demonstrated sendingmessages in a secure manner using high-dimensional quantum cryptography in realistic city conditions.
He taught a quantum cryptography class at the University of California, Berkeley, in which Shor's algorithm was studied.
This fabrication method has potential for applications in quantum cryptography(i.e. single photon sources) and quantum computation.
Quantum cryptography is an approach to securing communications based on certain phenomena of quantum physics.
Such technologies of the future as quantum computers and quantum cryptography require experimental development of complex quantum systems.
However, if quantum cryptography can be made practical, the use of one pads may provide truly unbreakable cryptosystems.
Unlike traditional cryptography, which uses mathematical methods to provide privacy of information, the quantum cryptography is concentrated on physics, which considers cases when information is transferred by means of objects of quantum mechanics.
Quantum cryptography was proposed first by Stephen Wiesner, then at Columbia University in New York, who, in the early 1970s, introduced the concept of quantum conjugate coding.
In comparison with the traditional cryptography, which uses mathematical methods,in order to ensure the security of information, quantum cryptography is based on physics, observing the cases when information is transmitted with the help of the means of quantum mechanics.
Well-known examples of quantum cryptography are the use of quantum communication to exchange a key securely(quantum key distribution) and the hypothetical use of quantum computers that would allow the breaking of various popular public-key encryption and signature schemes(e.g., RSA and ElGamal).
China has been active in the field of quantum cryptography lately, and now it's gearing up to use the technology in an"unhackable" government messaging service.
The satellite works by the principles of quantum cryptography, similar to existing fiber-based quantum key distribution networks in Europe, China, and the US.
Quantum optics and cryptography.
In computer science he has published material related to cryptography and quantum information.
One area of development is in quantum communication and cryptography.
One highly anticipated strength of quantum technology lies in cryptography- the art of secret communication.