Estimation of influence of error correction and privacy amplification on keys generation rate in QKD systems

Author(s):  
Dmitry M. Golubchikov ◽  
Konstantin E. Rumiantsev
2021 ◽  
Author(s):  
Yizhi Huang ◽  
Xingjian Zhang ◽  
Xiongfeng Ma

Abstract Privacy amplification is the key step to guarantee the security of quantum communication. The existing security proofs require accumulating a large number of raw key bits for privacy amplification. This is similar to block ciphers in classical cryptography that would delay the final key generation since an entire block must be accumulated before privacy amplification. Moreover, any leftover errors after information reconciliation would corrupt the entire block. By modifying the security proof based on quantum error correction, we develop a stream privacy amplification scheme, which resembles the classical stream cipher, to solve the problems of final key generation delay and error spread. The stream scheme can also help to enhance the security of trusted-relay quantum networks. Inspired by the connection between stream ciphers and quantum error correction in our security analysis, we further develop a generic information-theoretic tool to study the security of classical encryption algorithms.


1995 ◽  
Vol 73 (03) ◽  
pp. 547-547
Author(s):  
Guglielmo Mariani ◽  
Gualtiero Palareti ◽  
Giuliana Guazzaloca ◽  
Alberto Abate ◽  
Gian Domenico Di Nucci ◽  
...  
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