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Temperature-tuning of near-infrared monodisperse quantum dot solids at 1.5 mu m for controllable Forster energy transfer

机译:1.5微米近红外单分散量子点固体的温度调节,可控的福斯特能量转移

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摘要

We present the first time-resolved cryogenic observations of Forster energy transfer in large, monodisperse lead sulfide quantum dots with ground-state transitions near 1.5 mu m (0.8 eV), in environments from 160 K to room temperature. The observed temperature-dependent dipole-dipole transfer rate occurs in the range of (30-50 ns)(-1), measured with our confocal single-photon counting setup at 1.5 mu m wavelengths. By temperature-tuning the dots, 94% efficiency of resonant energy transfer can be achieved for donor dots. The resonant transfer rates match well with proposed theoretical models.
机译:我们提出了在160 K到室温的环境中,在基态跃迁接近1.5μm(0.8 eV)的大型单分散硫化铅量子点中Forster能量转移的第一时间分辨低温观察。用我们的共聚焦单光子计数装置在1.5微米波长处测得的温度依赖性偶极子-偶极子传输速率发生在(30-50 ns)(-1)范围内。通过对点进行温度调节,可以使施主点的共振能量转移效率达到94%。共振传递速率与提出的理论模型很好地匹配。

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