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Robustness Analysis of Quantum State Transfer through Spin-Chain in Diamond for Room-Temperature Quantum Computing

Authors :
Yan Wang
Jiaqi Jiang
Zhiping Yu
Source :
2018 14th IEEE International Conference on Solid-State and Integrated Circuit Technology (ICSICT).
Publication Year :
2018
Publisher :
IEEE, 2018.

Abstract

The quantum information as expressed by the spin-state of qubits in quantum computers needs to be transferred among qubits reliably with fidelity. This work examines the robustness of quantum state transfer (QST) via a one-dimensional spin-chain in the diamond formed by implanted nitrogen (N) atoms between qubits (or quantum registers) realized by N-V (nitrogen-vacancy) centers. The effect on QST fidelity of both uneven-ness in spin sites along the spin-chain and the lack of rotational symmetry of the chain is examined by numerical simulation.The theoretical approach for the analysis of spin chain is through the Jordan-Wignar transformation from the spin entities to fermions to simplify the mathematical complexity and to give a clear physical picture.The conclusions from this investigation are: 1) the QST via spin-chain is insensitive to the deviation of spin-location from their uniform spacing; 2) the broken rotational symmetry has big impact on the fidelity of QST.SWAP quantum gates for swapping bit information on two qubits linked by the spin-chain is used as an example for the analysis.The prospect and progress of using N-V centers in diamond for the realization of room-temperature quantum computers are finally reviewed in this talk.

Details

Database :
OpenAIRE
Journal :
2018 14th IEEE International Conference on Solid-State and Integrated Circuit Technology (ICSICT)
Accession number :
edsair.doi...........2933cc4c4b3ccde00fbd0769e3a564f1
Full Text :
https://doi.org/10.1109/icsict.2018.8565036