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Enhanced readout of spin states in double quantum dot

Enhanced readout of spin states in double quantum dot
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摘要 We investigate a spin-to-charge conversion mechanism which maps the spin singlet and triplet states to two charge states differing by one electron mediated by an intermediate metastable charge state. This mechanism allows us to observe fringes in the spin-unblocked region beyond the triplet transition line in the measurement of the exchange oscillations between singlet and triplet states in a four-electron dou- ble quantum dot. Moreover, these fringes are amplified and π-phase shifted, compared with those in the spin blockade region. Unlike the signal enhancement mechanism reported before which produces similar effects, this mechanism only requires one dot coupling to the lead, which is a commonly encountered case especially in imperfect devices. Besides, the crucial tunnel rate asymmetry is provided by the dependence on spin state, not by the asymmetric couplings to the leads. We also design a scheme to control the amplification process, which enables us to extract the relevant time parameters. This mechanism will have potential applications in future investigations of spin qubits. We investigate a spin-to-charge conversion mechanism which maps the spin singlet and triplet states to two charge states differing by one electron mediated by an intermediate metastable charge state. This mechanism allows us to observe fringes in the spin-unblocked region beyond the triplet transition line in the measurement of the exchange oscillations between singlet and triplet states in a four-electron double quantum dot. Moreover, these fringes are amplified and p-phase shifted, compared with those in the spin blockade region. Unlike the signal enhancement mechanism reported before which produces similar effects, this mechanism only requires one dot coupling to the lead, which is a commonly encountered case especially in imperfect devices. Besides, the crucial tunnel rate asymmetry is provided by the dependence on spin state, not by the asymmetric couplings to the leads. We also design a scheme to control the amplification process, which enables us to extract the relevant time parameters. This mechanism will have potential applications in future investigations of spin qubits.
出处 《Science Bulletin》 SCIE EI CAS CSCD 2017年第10期712-716,共5页 科学通报(英文版)
基金 supported by the National Key Research and Development Program (2016YFA0301700) the National Natural Science Foundation of China (11674300, 11304301, 11575172,61674132, and 91421303) the Strategic Priority Research Program of Chinese Academy of Sciences (XDB01030000) the Fundamental Research Fund for the Central Universities This work was partially carried out at the USTC Center for Micro and Nanoscale Research and Fabrication
关键词 Quantum dotSpin qubits Exchange oscillations Spin-to-charge conversion 双量子点 自旋态 不对称耦合 转换机制 读出 放大过程 增强机制 自旋状态
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