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Elimination of Spatial Side-Channel Information for Compact Quantum Key Distribution Senders

Elimination of Spatial Side-Channel Information for Compact Quantum Key Distribution Senders
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摘要 For a compact quantum key distribution (QKD) sender for the polarization encoding BB84 protocol, an eavesdropper could take a side-channel attack by measuring the spatial information of photons to infer their polarizations. The possibility of this attack can be reduced by introducing an aperture in the QKD sender, however, the effect of the aperture on the QKD security lacks of quantitative analysis. In this paper, we analyze the mutual information between the actual keys encoded at this QKD sender and the inferred keys at the eavesdropper (Eve), demonstrating the effect of the aperture to eliminate the spatial side-channel information quantitatively. It shows that Eve’s potential on eavesdropping spatial side-channel information is totally dependent on the optical design of the QKD sender, including the source arrangement and the aperture. The height of compact QKD senders with integrated light-emitting diode (LED) arrays could be controlled under several millimeters, showing great potential on applications in portable equipment. For a compact quantum key distribution(QKD) sender for the polarization encoding BB84 protocol, an eavesdropper could take a side-channel attack by measuring the spatial information of photons to infer their polarizations. The possibility of this attack can be reduced by introducing an aperture in the QKD sender, however,the effect of the aperture on the QKD security lacks of quantitative analysis. In this paper, we analyze the mutual information between the actual keys encoded at this QKD sender and the inferred keys at the eavesdropper(Eve),demonstrating the effect of the aperture to eliminate the spatial side-channel information quantitatively. It shows that Eve’s potential on eavesdropping spatial side-channel information is totally dependent on the optical design of the QKD sender, including the source arrangement and the aperture. The height of compact QKD senders with integrated light-emitting diode(LED) arrays could be controlled under several millimeters, showing great potential on applications in portable equipment.
出处 《Journal of Electronic Science and Technology》 CAS CSCD 2019年第3期195-203,共9页 电子科技学刊(英文版)
基金 supported by the National Key Research and Development Program of China under Grant No.2017YFA0303704 National Natural Science Foundation of China under Grants No.61575102,No.61671438,No.61875101,and No.61621064 Beijing Natural Science Foundation under Grant No.Z180012 Beijing Academy of Quantum Information Sciences under Grant No.Y18G26
关键词 Diffraction-limited imaging system mutual INFORMATION quantum key distribution SPATIAL side-channel INFORMATION Diffraction-limited imaging system mutual information quantum key distribution spatial side-channel information
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