Jiahua Wei
National University of Defense Technology
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Publication
Featured researches published by Jiahua Wei.
Quantum Information Processing | 2014
Jiahua Wei; Hong-Yi Dai; Ming Zhang
We propose two novel schemes for probabilistic remote preparation of an arbitrary quantum state with the aid of the introduction of auxiliary particles and appropriate local unitary operations. The first new proposal could be used to improve the total successful probability of the remote preparation of a general quantum state, and the successful probability is twice as much as the one of the preceding schemes. Meanwhile, one can make use of the second proposal to realize the remote state preparation when the information of the partially entangled state is only available for the sender. This is in contrast to the fact that the receiver must know the non-maximally entangled state in previous typical schemes. Hence, our second proposal could enlarge the applied range of probabilistic remote state preparation. Additionally, we will illustrate how to combine these novel proposals in detail, and our results show that the union has the advantages of both schemes. Of course, our protocols are implemented at the cost of the increased complexity of the practical realizations.
Quantum Information Processing | 2017
Jiahua Wei; Lei Shi; Lihua Ma; Yang Xue; Xuchun Zhuang; Qiaoyan Kang; Xuesong Li
We propose a novel scheme for remote preparation of an arbitrary n-qubit state with the aid of an appropriate local
Quantum Information Processing | 2018
Jiahua Wei; Lei Shi; Yu Zhu; Yang Xue; Zhiyan Xu; Jun Jiang
Quantum Information Processing | 2018
Jiahua Wei; Lei Shi; Chen Han; Zhiyan Xu; Yu Zhu; Gang Wang; Hao Wu
2^n\times 2^n
International Journal of Quantum Information | 2016
Jiahua Wei; Hong-Yi Dai; Ming Zhang; Le Yang; Jingsong Kuang
world congress on intelligent control and automation | 2012
Jiahua Wei; Weiwei Zhou; Hong-Yi Dai; Fengxing Zou; Ming Zhang
2n×2n unitary operation and n maximally entangled two-qubit states. The analytical expression of local unitary operation, which is constructed in the form of iterative process, is presented for the preparation of n-qubit state in detail. We obtain the total successful probabilities of the scheme in the general and special cases, respectively. The feasibility of our scheme in preparing remotely multi-qubit states is explicitly demonstrated by theoretical studies and concrete examples, and our results show that the novel proposal could enlarge the applied range of remote state preparation.
Quantum Information Processing | 2018
Jiahua Wei; Lei Shi; Junwen Luo; Yu Zhu; Qiaoyan Kang; Longqiang Yu; Hao Wu; Jun Jiang; Boxin Zhao
We propose an efficient scheme for remotely preparing an arbitrary n-qubit equatorial state via n two-qubit maximally entangled states. Compared to the former scheme (Wei et al. in Quantum Inf Process 16:260, 2017) that has the 50% successful probability when the amplitude factors of prepared states are
Fourth Seminar on Novel Optoelectronic Detection Technology and Application | 2018
Jiahua Wei; TingTing Zhang; Wei Guo; Xunjun Meng; Lei Shi; Yu Zhu
Advances in Mathematical Physics | 2018
Lei Shi; Kaihang Zhou; Jiahua Wei; Yu Zhu; Qiuli Zhu
2^{-n{/}2}
AOPC 2017: Fiber Optic Sensing and Optical Communications | 2017
Junwen Luo; Lei Shi; Yang Xue; Jiahua Wei