首页|Protected simultaneous quantum remote state preparation scheme by weak and reversal measurements in noisy environments

Protected simultaneous quantum remote state preparation scheme by weak and reversal measurements in noisy environments

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We discuss a quantum remote state preparation protocol by which two parties,Alice and Candy,prepare a single-qubit and a two-qubit state,respectively,at the site of the receiver Bob.The single-qubit state is known to Alice while the two-qubit state which is a non-maximally entangled Bell state is known to Candy.The three parties are connected through a single entangled state which acts as a quantum channel.We first describe the protocol in the ideal case when the entangled channel under use is in a pure state.After that,we consider the effect of amplitude damping(AD)noise on the quantum channel and describe the protocol executed through the noisy channel.The decrement of the fidelity is shown to occur with the increment in the noise parameter.This is shown by numerical computation in specific examples of the states to be created.Finally,we show that it is possible to maintain the label of fidelity to some extent and hence to decrease the effect of noise by the application of weak and reversal measurements.We also present a scheme for the generation of the five-qubit entangled resource which we require as a quantum channel.The generation scheme is run on the IBMQ platform.

multi-qubit entangled channelquantum remote state preparationnoisy environmentsweak and reversal measurements

Mandal Manoj Kumar、Choudhury Binayak S.、Samanta Soumen

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Department of Mathematics,Indian Institute of Engineering Science and Technology,Shibpur B.Garden,Howrah 711103,West Bengal,India

Indian Institute of Engineering science and Technology,Shibpur,India

2024

中国物理B(英文版)
中国物理学会和中国科学院物理研究所

中国物理B(英文版)

CSTPCDEI
影响因子:0.995
ISSN:1674-1056
年,卷(期):2024.33(2)
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