Spin-photon module for scalable network architecture in quantum dots

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作者
Xing-Yu Zhu
Tao Tu
Ao-Lin Guo
Zong-Quan Zhou
Guang-Can Guo
Chuan-Feng Li
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[1] Chinese Academy of Sciences,Key Laboratory of Quantum Information, University of Science and Technology of China
[2] University of California at Los Angeles,Department of Physics and Astronomy
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Reliable information transmission between spatially separated nodes is fundamental to a network architecture for scalable quantum technology. Spin qubit in semiconductor quantum dots is a promising candidate for quantum information processing. However, there remains a challenge to design a practical path from the existing experiments to scalable quantum processor. Here we propose a module consisting of spin singlet-triplet qubits and single microwave photons. We show a high degree of control over interactions between the spin qubit and the quantum light field can be achieved. Furthermore, we propose preparation of a shaped single photons with an efficiency of 98%, and deterministic quantum state transfer and entanglement generation between remote nodes with a high fidelity of 90%. This spin-photon module has met the threshold of particular designed error-correction protocols, thus provides a feasible approach towards scalable quantum network architecture.
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