Autores
Sun Guohua
Título Entanglement property of the Werner state in accelerated frames
Tipo Revista
Sub-tipo JCR
Descripción Quantum Information Processing
Resumen We study the entanglement property of a free Dirac field in a Werner state as seen by two relatively accelerated parties. We study the concurrence, negativity, mutual information and pi-tangle of the tripartite system. We show how these entanglement properties depend on both the free parameter F, which is a real parameter called fidelity, and the acceleration parameter r. The degree of entanglement is degraded by the Unruh effect, but we notice that the Werner state always remains entangled even in the acceleration limit, and thus, it can become a good candidate to quantum teleportation in uniform acceleration frame. We notice that the entropy S(rho AIII) decreases with the free parameter F, and also S(rho AIII), S(rho A) and S(rho III) are independent of the acceleration parameter r. The von Neumann entropy is not a good entanglement measure any more for this mixed state. We verify that the Werner state in a noninertial frame obeys the Coffman-Kundu-Wootters (CKW) monogamous inequality and find that two useful relations for the concurrence and negativity.
Observaciones DOI 10.1007/s11128-019-2421-4
Lugar New York
País Estados Unidos
No. de páginas Article number 314
Vol. / Cap. v. 18 no. 10
Inicio 2019-10-01
Fin
ISBN/ISSN