首页> 外文会议>International Conference on High Magnetic Fields in Semiconductor Physics; 20040802-06; Tallahassee,FL(US) >EXCITON SPIN STATES IN NANOCRYSTAL QUANTUM DOTS REVEALED BY SPIN-POLARIZED RESONANT PHOTOLUMINESCENCE AND RAMAN SPECTROSCOPY
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EXCITON SPIN STATES IN NANOCRYSTAL QUANTUM DOTS REVEALED BY SPIN-POLARIZED RESONANT PHOTOLUMINESCENCE AND RAMAN SPECTROSCOPY

机译:自旋极化共振光致发光和拉曼光谱揭示的纳米量子点的激子自旋态

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We performed spin-polarized resonant Raman and resonant photoluminescence excitation spectroscopy (also known as "fluorescence line narrowing") on ZnS-capped CdSe nanocrystal quantum dots in high magnetic fields to 33 Tesla and temperatures down to 1.7K, which allows detailed investigation of the excitonic spin states. In these experiments, spin-polarized electrons and holes are resonantly injected by circularly polarized light into colloidal quantum dots of specific size, using a narrowband tunable dye laser and a fiber-coupled probe that is specially-designed for use in high-field magnets. In addition to the expected broad features associated with excitonic recombination and Raman-like peaks associated with quantized acoustic phonons, the photoluminescence spectra measured at magnetic fields larger than 10 Tesla develop a sharp peak, which moves roughly linearly with applied magnetic field. Further, the energy of this high-field peak varies systematically as a function of nanocrystal size. However, unlike typical electron spin flip transitions, the mode energy extrapolates to a finite value at zero magnetic field, suggesting the existence of an additional size-dependent exchange mechanism.
机译:我们在高磁场至33特斯拉和低至1.7K的温度下对ZnS封端的CdSe纳米晶体量子点进行了自旋极化共振拉曼光谱和共振光致发光激发光谱(也称为“荧光线变窄”),从而可以对激子自旋态。在这些实验中,使用窄带可调谐染料激光器和专门设计用于高磁场磁体的光纤耦合探头,通过圆偏振光将自旋极化的电子和空穴共振注入特定尺寸的胶体量子点。除了预期的与激子复合相关的广泛特征以及与量化声子相关的拉曼峰外,在大于10特斯拉的磁场下测得的光致发光光谱还会产生一个尖峰,该峰随施加的磁场大致呈线性移动。此外,该高场峰的能量根据纳米晶体尺寸而系统地变化。但是,与典型的电子自旋翻转跃迁不同,模式能量在零磁场下外推至有限值,这表明存在其他与尺寸有关的交换机制。

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