Hosseiny Seyed Mohammad, Seyed-Yazdi Jamileh, Norouzi Milad, Livreri Patrizia
Physics Department, Faculty of Science, Vali-e-Asr University of Rafsanjan, Rafsanjan, Iran.
Department of Engineering, University of Palermo, Palermo, 90128, Italy.
Sci Rep. 2024 Apr 26;14(1):9607. doi: 10.1038/s41598-024-60321-1.
One of the most appealing quantum communication protocols is quantum teleportation, which involves sharing entanglement between the sender and receiver of the quantum state. We address the two-qubit quantum teleportation based on the Heisenberg XYZ chain with a magnetic-field gradient affected by intrinsic decoherence. An atomic spin chain is primarily coupled to the linear gradient of the magnetic field in the x-direction, with the assumption that the magnetic field varies linearly with the position of the atom. By using the concepts of fidelity and average fidelity in the presence of the magnetic field gradient and under the effect of intrinsic decoherence in the current model, and considering the variables of the system, an improved quantum teleportation can be achieved. In addition, using the concept of remote quantum estimation, we examine remote quantum sensing in this article, which is very useful in quantum communication.
最具吸引力的量子通信协议之一是量子隐形传态,它涉及在量子态的发送者和接收者之间共享纠缠。我们研究基于具有受内在退相干影响的磁场梯度的海森堡XYZ链的两比特量子隐形传态。假设磁场随原子位置线性变化,原子自旋链主要耦合到x方向磁场的线性梯度。通过在当前模型中利用存在磁场梯度和内在退相干效应时的保真度和平均保真度概念,并考虑系统变量,可以实现改进的量子隐形传态。此外,利用远程量子估计的概念,我们在本文中研究远程量子传感,这在量子通信中非常有用。