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Time-resolved photoluminescence of the ZnO nanorods: size and temperature dependences

机译:ZnO纳米棒的时间分离的光致发光:尺寸和温度依赖性

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The dynamics of the bound and free excitons and exiton polaritons of the ZnO nanorods have been investigated by time resolved photoluminescence in the temperature range from 10 K to 300 K. The samples have been fabricated by catalyst-free metal organic chemical vapor deposition (MOCVD), and have a diameter 35 nm and lengths in the range of 150 nm to 1.1 μm. In the temperature range of 10 K to 50 K, the photoluminescence lifetime of the bound exciton increases as the temperature increases. Photoluminescence lifetime of the free excitons, however, decreases with the temperature. The low temperature (10 K) time resolved photoluminescence spectra reconstructed from the time profiles measured at different frequencies clearly show that the bound exciton decay faster than the free A exciton. This result may be due to the transition from the bound exciton to free exciton because of the local temperature increase. Free B exciton is dominant above 50 K, and forms exciton polariton at high temperatures. At low temperature, photoluminescence lifetimes of the free A and B excitons do not show a clear correlation with the length of the nanorods. At room temperature, however, the photoluminescence lifetime increases monotonically as the length of the nanorods increase in the range of 150 nm to 600 nm. Decrease of the radiative decay rate of the exciton polariton has been invoked to account for the results.
机译:通过将10k至300​​k的温度范围内的时间分辨的光致发光研究了ZnO纳米棒的束缚和自由激子和Exit on Polaritons的动力学。通过催化剂 - 无金属有机化学气相沉积(MOCVD)制造了样品,并且在150nm至1.1μm的范围内的直径35nm和长度。在10k至50k的温度范围内,随着温度的增加,结合的激子的光致发光寿命增加。然而,自由激子的光致发光寿命随温度而降低。从不同频率测量的时间谱重建的低温(10 k)时间分辨的光致发光光谱清楚地表明结合的激子衰减比自由激子更快。由于局部温度升高,该结果可能是由于从结合的激子到自由激子的过渡。免费B激子在50 k以上占主导地位,在高温下形成激子极化棒。在低温下,游离A和B个激子的光致发光寿命不显示与纳米棒的长度明显相关的。然而,在室温下,当纳米棒的长度增加150nm至600nm的范围时,光致发光寿命单调增加。已经调用了激子极谱的辐射衰减率的降低,以考虑结果。

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