Title :
Entanglement distillation using various quantum channels
Author :
Verma, A. ; Pandey, Ashutosh ; Nandan, S. ; Panigrahi, Pratap Kumar
Author_Institution :
Jaypee Univ. of Eng. & Technol., Guna, India
Abstract :
Long distance communication using quantum systems has been an area of great interest. The use of quantum repeaters in quantum systems is essential for successful long distance communication. The use of quantum memories in quantum repeaters faces a problem of entanglement loss. The remedy for entanglement loss is the entanglement distillation. In this paper we have described a protocol for entanglement distillation. The pairs of W, Bell and GHZ type entangled states were used as channels and sited their probabilistic success in entanglement distillation of a two qubit non-maximally entangled unknown state. The results obtained from quantum distillation using different quantum channels are compared and the best protocol for quantum distillation can be used in quantum memories which are used in quantum repeaters for efficient long distance communication.
Keywords :
optical repeaters; quantum communication; quantum entanglement; telecommunication channels; entangled states; entanglement distillation; entanglement loss; long distance communication; quantum channels; quantum memories; quantum repeaters; quantum systems; Atmospheric measurements; Logic gates; Particle measurements; Protocols; Quantum entanglement; Repeaters; Bell state; Entanglement; GHZ state; Quantum repeaters; W State;
Conference_Titel :
Computing, Communications and Networking Technologies (ICCCNT),2013 Fourth International Conference on
Conference_Location :
Tiruchengode
Print_ISBN :
978-1-4799-3925-1
DOI :
10.1109/ICCCNT.2013.6726728