English

Experimental protection and revival of quantum correlation in open solid systems

Quantum Physics 2015-06-11 v1

Abstract

Quantum correlation quantified by quantum discord has been demonstrated experimentally as important physical resources in quantum computation and communication for some cases even without the presence of entanglement. However, since the interaction between the quantum system and the noisy environment is inevitable, it is essential to protect quantum correlation from lost in the environment and to characterize its dynamical behavior in the real open systems. Here we showed experimentally in the solid-state P:Si system the existence of a stable interval for the quantum correlation in the beginning until a critical time tc166t_c \approx 166 ns of the transition from classical to quantum decoherence. To protect the quantum correlation, we achieved the extension of the critical time by 50 times to 8μ8 \mus by applying a two-flip dynamical decoupling (DD) pulse sequence. Moreover, we observed the phenomenon of the revival of quantum correlation, as well as classical correlation. The experimental observation of a non-decay interval for quantum correlation and the great extension of it in an important solid-state system with genuine noise makes the use quantum discord as physical resources in quantum information processing more practicable.

Keywords

Cite

@article{arxiv.1210.0199,
  title  = {Experimental protection and revival of quantum correlation in open solid systems},
  author = {Xing Rong and Fangzhou Jin and Zixiang Wang and Jianpei Geng and Chenyong Ju and Ya Wang and Runmin Zhang and Changkui Duan and Minjun Shi and Jiangfeng Du},
  journal= {arXiv preprint arXiv:1210.0199},
  year   = {2015}
}

Comments

8 pages, 6 figures, with supplementary materials

R2 v1 2026-06-21T22:13:30.242Z