Quantum Cryptography,Quantum Communication,and Quantum Computer in a Noisy Environment |
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Authors: | Koji Nagata Tadao Nakamura |
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Affiliation: | 1.Department of Physics,Korea Advanced Institute of Science and Technology,Daejeon,Korea;2.Department of Information and Computer Science,Keio University,Yokohama,Japan |
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Abstract: | First, we study several information theories based on quantum computing in a desirable noiseless situation. (1) We present quantum key distribution based on Deutsch’s algorithm using an entangled state. (2) We discuss the fact that the Bernstein-Vazirani algorithm can be used for quantum communication including an error correction. Finally, we discuss the main result. We study the Bernstein-Vazirani algorithm in a noisy environment. The original algorithm determines a noiseless function. Here we consider the case that the function has an environmental noise. We introduce a noise term into the function f(x). So we have another noisy function g(x). The relation between them is g(x) = f(x) ± O(??). Here O(??) ? 1 is the noise term. The goal is to determine the noisy function g(x) with a success probability. The algorithm overcomes classical counterpart by a factor of N in a noisy environment. |
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