<p>In this paper, we explore the effects of correlated amplitude damping noise and depolarizing noise for quantum steering. We find that adjusting the channel’s correlated parameters can enhance the resilience of quantum steering against decoherence, thereby maintaining the non-local characteristics of quantum systems under noisy conditions. This investigation provides valuable insights for the advancement of quantum communication and information processing technologies, presenting new strategies and theoretical underpinnings for the development of noise-resilient quantum information protocols.</p>

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Dynamics of quantum steering in correlated noise channels

  • Ming-Ming Du,
  • Hong-Wei Li,
  • Shu-Ting Shen,
  • Xiao-Jing Yan,
  • Xi-Yun Li,
  • Lan Zhou,
  • Wei Zhong,
  • Yu-Bo Sheng

摘要

In this paper, we explore the effects of correlated amplitude damping noise and depolarizing noise for quantum steering. We find that adjusting the channel’s correlated parameters can enhance the resilience of quantum steering against decoherence, thereby maintaining the non-local characteristics of quantum systems under noisy conditions. This investigation provides valuable insights for the advancement of quantum communication and information processing technologies, presenting new strategies and theoretical underpinnings for the development of noise-resilient quantum information protocols.