Valley filter is a promising device for producing valley polarized current in graphene-like two-dimensional honeycomb lattice materials.The relatively large spin-orbit coupling in silicene contributes to remarkable qu...Valley filter is a promising device for producing valley polarized current in graphene-like two-dimensional honeycomb lattice materials.The relatively large spin-orbit coupling in silicene contributes to remarkable quantum spin Hall effect,which leads to distinctive valley-dependent transport properties compared with intrinsic graphene.In this paper,quantized conductance and valley polarization in silicene nanoconstrictions are theoretically investigated in quantum spin-Hall insulator phase.Nearly perfect valley filter effect is found by aligning the gate voltage in the central constriction region.However,the valley polarization plateaus are shifted with the increase of spin-orbit coupling strength,accompanied by smooth variation of polarization reversal.Our findings provide new strategies to control the valley polarization in valleytronic devices.展开更多
文摘目的为解决水果内部品质信息的快速无损检测,自主研制了一台基于可见/近红外光谱技术的便携式分析仪,通过试验验证其可行性及所建模型的鲁棒性。方法以红富士苹果为检测对象,采集透射光谱曲线,与化学指标可溶性固形物含量(soluble solid content,SSC)分别建立基于平均光谱、基于各采样光谱的偏最小二乘(partial least squares,PLS)回归模型,比较预测精度并对非同批次样本进行预测。结果试验表明该分析仪对苹果SSC具有较高的测量精度,特别是基于各采样光谱的PLS模型,对同批次样本预测相关系数(Rp)达到0.924,预测均方根误差低至0.429%Brix,预测精密度(平均偏差)低至0.136%Brix,对非同批次样本SSC表现出较强的鲁棒性能,预测均方根误差为0.531%Brix。结论通过此项研究,表明该便携分析仪可用于水果内部品质信息的定量分析,并建议采用基于各采样光谱建立的回归模型用于外来样本的预测。
基金the Natural Science Foundation of Zhejiang Province,China(Grant No.LQ17A040001)the National Natural Science Foundation of China(Grant Nos.61874078,11647046,and 61904125)+1 种基金the National Key Research and Development Program of China(Grant No.2018YFB2202100)the Science and Technology Planning Project of Wenzhou City(Grant No.G20180012).
文摘Valley filter is a promising device for producing valley polarized current in graphene-like two-dimensional honeycomb lattice materials.The relatively large spin-orbit coupling in silicene contributes to remarkable quantum spin Hall effect,which leads to distinctive valley-dependent transport properties compared with intrinsic graphene.In this paper,quantized conductance and valley polarization in silicene nanoconstrictions are theoretically investigated in quantum spin-Hall insulator phase.Nearly perfect valley filter effect is found by aligning the gate voltage in the central constriction region.However,the valley polarization plateaus are shifted with the increase of spin-orbit coupling strength,accompanied by smooth variation of polarization reversal.Our findings provide new strategies to control the valley polarization in valleytronic devices.