Effect of imperfect Faraday mirrors on security of a Faraday-Michelson quantum cryptography system
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The one-way Faraday-Michelson system is a very useful practical quantum cryptography system where Faraday mirrors(FMs) play an important role. In this paper we analyze the security of this system against imperfect FMs. We consider the security loophole caused by the imperfect FMs in Alice's and Bob's security zones. Then we implement a passive Faraday mirror attack in this system. By changing the values of the imperfection parameters of Alice's FMs, we calculate the quantum bit error rate between Alice and Bob induced by Eve and the probability that Eve obtains outcomes successfully. It is shown that the imperfection of one of Alice's two FMs makes the system sensitive to the attack. At last we give a modified key rate as a function of the Faraday mirror imperfections. The security analysis indicates that both Alice's and Bob's imperfect FMs can compromise the secure key.
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