The exchange interaction between neighboring quantum dots:physics and applications in quantum information processing

被引:0
|
作者
Zheng Zhou
Yixin Li
Zhiyuan Wu
Xinping Ma
Shichang Fan
Shaoyun Huang
机构
[1] SchoolofElectronics,BeijingKeyLaboratoryofQuantumDevices,KeyLaboratoryforthePhysicsandChemistryofNanodevices,PekingUniversity
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中图分类号
O413 [量子论];
学科分类号
摘要
Electron spins confined in semiconductor quantum dots (QDs) are one of potential candidates for physical implementation of scalable quantum information processing technologies. Tunnel coupling based inter exchange interaction between QDs is crucial in achieving single-qubit manipulation, two-qubit gate, quantum communication and quantum simulation. This review first provides a theoretical perspective that surveys a general framework, including the Helter-London approach, the Hund-Mulliken approach, and the Hubbard model, to describe the inter exchange interactions between semiconductor quantum dots. An electrical method to control the inter exchange interaction in a realistic device is proposed as well. Then the significant achievements of inter exchange interaction in manipulating single qubits, achieving two-qubit gates, performing quantum communication and quantum simulation are reviewed. The last part is a summary of this review.
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页码:27 / 42
页数:16
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