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Quantum Cost Efficient Scheme For Violating The Holevo Bound And Cloning In The Presence Of Deutschian Closed Timelike Curves

Abstract

Brun *et al.* [Phys. Rev. Lett. \textbf\{102\}, 210402 (2009)] showed that in the presence of a Deutschian closed timelike curve (D-CTC), one could violate the Holevo bound. It is possible to utilize the Holevo bound violation to encode -bit classical information in a single qubit. Here we demonstrate a new quantum cost efficient scheme, for storing and retrieving -bit classical information faithfully in the presence of a D-CTC in violation of the Holevo bound. We also propose a new protocol for cloning a qubit in the presence of a D-CTC. In both the schemes, the quantum cost is found to be of order , which provides an advantage over the existing schemes having quantum cost of exponential order.

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