Israel Cidon, Leonidas Georgiadis, et al.
IEEE/ACM Transactions on Networking
A formula for the capacity of a quantum channel for transmitting private classical information is derived. This is shown to be equal to the capacity of the channel for generating a secret key, and neither capacity is enhanced by forward public classical communication. Motivated by the work of Schumacher and Westmoreland on quantum privacy and quantum coherence, parallels between private classical information and quantum information are exploited to obtain an expression for the capacity of a quantum channel for generating pure bipartite entanglement. The latter implies a new proof of the quantum channel coding theorem and a simple proof of the converse. The coherent information plays a role in all of the above mentioned capacities. © 2005 IEEE.
Israel Cidon, Leonidas Georgiadis, et al.
IEEE/ACM Transactions on Networking
Ruixiong Tian, Zhe Xiang, et al.
Qinghua Daxue Xuebao/Journal of Tsinghua University
György E. Révész
Theoretical Computer Science
Donald Samuels, Ian Stobert
SPIE Photomask Technology + EUV Lithography 2007