Hierarchical joint remote state preparation in noisy environment

被引:52
作者
Shukla, Chitra [1 ]
Thapliyal, Kishore [2 ]
Pathak, Anirban [2 ]
机构
[1] Nagoya Univ, Grad Sch Informat Sci, Chikusa Ku, Furo Cho 1, Nagoya, Aichi 4648601, Japan
[2] Jaypee Inst Informat Technol, A-10,Sect 62, Noida 201307, UP, India
基金
日本学术振兴会;
关键词
Joint remote state preparation; Hierarchical quantum communication; Amplitude damping noise; Phase damping noise; Collective noise; Pauli noise; Quantum communication; QUANTUM COMMUNICATION; TELEPORTATION;
D O I
10.1007/s11128-017-1654-3
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
A novel scheme for quantum communication having substantial applications in practical life is designed and analyzed. Specifically, we have proposed a hierarchical counterpart of the joint remote state preparation (JRSP) protocol, where two senders can jointly and remotely prepare a quantum state. One sender has the information regarding amplitude, while the other one has the phase information of a quantum state to be jointly prepared at the receiver's port. However, there exists a hierarchy among the receivers, as far as powers to reconstruct the quantum state are concerned. A 5-qubit cluster state has been used here to perform the task. Further, it is established that the proposed scheme for hierarchical JRSP (HJRSP) is of enormous practical importance in critical situations involving defense and other sectors, where it is essential to ensure that an important decision/order that can severely affect a society or an organization is not taken by a single person, and once the order is issued, all the receivers do not possess an equal right to implement it. Further, the effect of different noise models (e.g., amplitude damping (AD), phase damping (PD), collective noise and Pauli noise models) on the HJRSP protocol proposed here is investigated. It is found that in AD and PD noise models a higher-power agent can reconstruct the quantum state to be remotely prepared with higher fidelity than that done by the lower-power agent(s). In contrast, the opposite may happen in the presence of collective noise models. We have also proposed a scheme for probabilistic HJRSP using a non-maximally entangled 5-qubit cluster state.
引用
收藏
页数:32
相关论文
共 50 条
[21]   Effect of noise on joint remote preparation of an arbitrary two-qubit state via a Brown state [J].
Chen, Qing-qin ;
Lu, Mei ;
Hao, Si-yang .
INDIAN JOURNAL OF PHYSICS, 2021, 95 (05) :881-890
[22]   Effect of noise on joint remote preparation of an arbitrary two-qubit state via a Brown state [J].
Qing-qin Chen ;
Mei Lu ;
Si-yang Hao .
Indian Journal of Physics, 2021, 95 :881-890
[23]   Hierarchical remote preparation of an arbitrary two-qubit state with multiparty [J].
Songya Ma ;
Niannian Wang .
Quantum Information Processing, 2021, 20
[24]   Hierarchical remote preparation of an arbitrary two-qubit state with multiparty [J].
Ma, Songya ;
Wang, Niannian .
QUANTUM INFORMATION PROCESSING, 2021, 20 (08)
[25]   Joint remote state preparation of mixed states [J].
Zhang, Zhihua ;
Zhao, Congran ;
Wang, Jinwei ;
Shu, Lan .
JOURNAL OF PHYSICS B-ATOMIC MOLECULAR AND OPTICAL PHYSICS, 2020, 53 (02)
[26]   Experimental architecture of joint remote state preparation [J].
Ming-Xing Luo ;
Xiu-Bo Chen ;
Yi-Xian Yang ;
Xin-Xin Niu .
Quantum Information Processing, 2012, 11 :751-767
[27]   Bidirectional controlled joint remote state preparation [J].
Peng, Jia-Yin ;
Bai, Ming-Qiang ;
Mo, Zhi-Wen .
QUANTUM INFORMATION PROCESSING, 2015, 14 (11) :4263-4278
[28]   Remote state preparation via a GHZ-class state in noisy environments [J].
Liang, Hua-Qiu ;
Liu, Jin-Ming ;
Feng, Shang-Shen ;
Chen, Ji-Gen .
JOURNAL OF PHYSICS B-ATOMIC MOLECULAR AND OPTICAL PHYSICS, 2011, 44 (11)
[29]   Asymmetric Controlled Bidirectional Remote Preparation of Single- and Three-Qubit Equatorial State in Noisy Environment [J].
Sun, Yi-Ru ;
Xu, Gang ;
Chen, Xiu-Bo ;
Yang, Yu ;
Yang, Yi-Xian .
IEEE ACCESS, 2019, 7 :2811-2822
[30]   Mentor initialed multiparty hierarchical joint remote preparation of an arbitrary n-qudit state via generalized Bell states [J].
Jing, Rui-Heng ;
Huang, Yu-Bin ;
Bi, An-An ;
Luo, Wen-Wen ;
Zhou, Ping ;
Lan, Qi .
PHYSICA SCRIPTA, 2024, 99 (02)