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Optical nuclear spin polarization in quantum dots
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作者 李爱仙 段素青 张伟 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第10期535-539,共5页
Hyperfine interaction between electron spin and randomly oriented nuclear spins is a key issue of electron coherence for quantum information/computation. We propose an efficient way to establish high polarization of n... Hyperfine interaction between electron spin and randomly oriented nuclear spins is a key issue of electron coherence for quantum information/computation. We propose an efficient way to establish high polarization of nuclear spins and reduce the intrinsic nuclear spin fluctuations. Here, we polarize the nuclear spins in semiconductor quantum dot(QD) by the coherent population trapping(CPT) and the electric dipole spin resonance(EDSR) induced by optical fields and ac electric fields. By tuning the optical fields, we can obtain a powerful cooling background based on CPT for nuclear spin polarization. The EDSR can enhance the spin flip–flop rate which may increase the cooling efficiency. With the help of CPT and EDSR, an enhancement of 1300 times of the electron coherence time can be obtained after a 10-ns preparation time. 展开更多
关键词 nuclear spin polarization coherent population trapping electron dipole spin resonance
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Optical pumping nuclear magnetic resonance system rotating in a plane parallel to the quantization axis
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作者 丁志超 袁杰 +1 位作者 罗晖 龙兴武 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第9期164-168,共5页
A model of an optical pumping nuclear magnetic resonance system rotating in a plane parallel to the quantization axis is presented. Different coordinate frames for nuclear spin polarization vector are introduced, and ... A model of an optical pumping nuclear magnetic resonance system rotating in a plane parallel to the quantization axis is presented. Different coordinate frames for nuclear spin polarization vector are introduced, and theoretical calculation is conducted to analyze this model. We demonstrate that when the optical pumping nuclear magnetic resonance system rotates in a plane parallel to the quantization axis, it will maintain a steady state with respect to the quantization axis which is independent of rotational speed and direction. 展开更多
关键词 optical pumping nuclear magnetic resonance spin polarization
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