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Distinguishability and Disturbance in the Quantum Key Distribution Protocol Using the Mean Multi-Kings’ Problem
Authors:Masakazu Yoshida  Ayumu Nakayama  Jun Cheng
Affiliation:1.Faculty of Design Technology, Osaka Sangyo University, 3-1-1 Daito-shi, Osaka 574-8530, Japan;2.Independent Researcher, Chiba 263-8522, Japan;3.Faculty of Science and Engineering, Doshisha University, 1-3 Kyotanabe-shi, Kyoto 610-0394, Japan;
Abstract:We introduce a quantum key distribution protocol using mean multi-kings’ problem. Using this protocol, a sender can share a bit sequence as a secret key with receivers. We consider a relation between information gain by an eavesdropper and disturbance contained in legitimate users’ information. In BB84 protocol, such relation is known as the so-called information disturbance theorem. We focus on a setting that the sender and two receivers try to share bit sequences and the eavesdropper tries to extract information by interacting legitimate users’ systems and an ancilla system. We derive trade-off inequalities between distinguishability of quantum states corresponding to the bit sequence for the eavesdropper and error probability of the bit sequence shared with the legitimate users. Our inequalities show that eavesdropper’s extracting information regarding the secret keys inevitably induces disturbing the states and increasing the error probability.
Keywords:quantum key distribution, mean-king’  s problem, mean multi-kings’   problem, information disturbance theorem
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