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在变温条件下,对CdSe/ZnSe超薄层中的两类量子岛(点)进行了荧光光谱研究.在低温时,这两类岛之间的激子转移主要是通过隧穿过程,而随着温度的升高,局域激子的热跳跃逐渐取代隧穿过程成为激子转移的主导机理.研究还发现,小岛是具有准零维光学性质且不同于大岛的纳米团簇,它们激子的光学特性之间存在一定的差异,但实验表明两类量子岛之间又有很大的光学关联. 关键词: 量子点 激子 CdSe  相似文献   
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We theoretically and experimentally studied the Gilbert damping evolution of both acoustic and optical magnetic resonance modes in the layered flake Cr Cl;with an external magnetic field H applied in plane.Based on a Lagrangian equation and a Rayleigh dissipation function,we predicted that the resonance linewidth△H as a function of microwave frequencyωis nonlinear for both acoustic and optical modes in the Cr Cl;flake,which is significantly different from the linear relationship of△H-ωin ferromagnets.Measuring the microwave transmission through the Cr Cl;flake,we obtained theω–H dispersion and damping evolution△H–ωfor both acoustic and optical modes.Combining both our theoretical prediction and experimental observations,we concluded that the nonlinear damping evolution△H–ωis a consequence of the interlayer interaction during the antiferromagnetic resonance,and the interlayer Gilbert dissipation plays an important role in the nonlinear damping evolution because of the asymmetry of the non-collinear magnetizaiton between layers.  相似文献   
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利用显微荧光和显微拉曼光谱,研究了分子束外延生长的CdSe/ZnSe异质结构中,由两种不同机理形成的两类具有不同尺寸和组分的Zn1-xCdxSe量子岛.4.2 K时的显微荧光光谱表明,当CdSe淀积厚度由1.8 ML增加到2.3ML时,Zn1-xCdxSe量子岛的激子荧光峰有166 meV的较大红移,这是量子岛尺寸改变引起的量子限制势能变化所不能完全解释的.经过对样品的显微荧光和显微拉曼光谱的对比分析,发现还存在另外两种引起量子岛荧光峰较大红移的机理:一方面是因为随着CdSe淀积厚度的增加,具有更低能态的大岛密度的增加,并逐渐取代小岛而主导Zni-xCdxSe量子岛的荧光性质;另一方面是由于CdSe/ZnSe量子结构中的两类量子岛的Cd组分浓度也会随CdSe淀积厚度的增加而增加,从而引起量子岛荧光峰的较大红移.  相似文献   
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We perform the micro-photoluminescence measurement at low temperatures and a scanning optical mapping with high spatial resolution of a single V-grooved GaAs quantum wire modified by the selective ion-implantation and rapid thermally annealing. While the mapping shows the luminescences respectively from the quantum wires and from quantum well areas between quantum wires in general, the micro-photoluminescence at liquid He temperatures reveals a plenty of spectral structures of the PL band for a single quantum wire. The spectral structures are attributed to the inhomogeneity and non-uniformity of both the space structure and compositions of real wires as well as the defects nearby the interface between quantum wire and surrounding quantum well structures. All these make the excitons farther localized in quasi-zero-dimensional quantum potential boxes related to these non-uniformity and/or defects. The results also demonstrate the ability of micro-photoluminescence measurement and mapping for the characterization of both opto-electronic and structural properties of real quantum wires.  相似文献   
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