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Trapped Ion Quantum Computing
Robust Quantum State Transfer in Random Unpolarized Spin Chains
arXiv
Authors: Norman Y. Yao, Liang Jiang, Alexey V. Gorshkov, Zhe-Xuan Gong, Alex Zhai, L. -M. Duan, Mikhail D. Lukin
Year
2010
Paper ID
10460
Status
Preprint
Abstract Read
~2 min
Abstract Words
118
Citations
N/A
Abstract
We propose and analyze a new approach for quantum state transfer between remote spin qubits. Specifically, we demonstrate that coherent quantum coupling between remote qubits can be achieved via certain classes of random, unpolarized (infinite temperature) spin chains. Our method is robust to coupling strength disorder and does not require manipulation or control over individual spins. In principle, it can be used to attain perfect state transfer over arbitrarily long range via purely Hamiltonian evolution and may be particularly applicable in a solid-state quantum information processor. As an example, we demonstrate that it can be used to attain strong coherent coupling between Nitrogen-Vacancy centers separated by micrometer distances at room temperature. Realistic imperfections and decoherence effects are analyzed.
Why This Paper Matters
- This paper contributes to the Trapped-Ion Quantum Computing research area in the Quantum Articles archive.
- It adds a 2010 reference point for readers tracking recent quantum research.
- We propose and analyze a new approach for quantum state transfer between remote spin qubits.
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