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Room-temperature luminescence from rare-earth ions implanted into Si nanocrystals

机译:植入硅纳米晶体中的稀土离子在室温下发光

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Efficient room-temperature luminescence from rare earths contained in Si nanocrystals is reported. Si nanocrystals were formed by high-dose Si implantation into SiO2 followed by high-temperature annealing. Er implantation was then performed both in pure SiO2 and in SiO2 containing the nanocrystals. Luminescence measurements showed that the Er signal at 1.54 mu m is two orders of magnitude higher in the sample containing the nanocrystals than in pure SiO2. Excitation spectroscopy demonstrated that, while within SiO2 Er is excited through direct photon absorption, excitation within the nanocrystals occurs via an efficient carrier-mediated process. These data demonstrate that the non-radiative processes usually limiting Er luminescence in Si are almost absent within the nanocrystals. Extension to other rare earths (namely Tm, Yb and Nd) is reported showing that the wavelength of emission can be properly tuned. The implications of these results are discussed. [References: 16]
机译:据报道,Si纳米晶体中所含稀土元素可有效地室温发光。通过向SiO 2中大剂量注入Si,然后进行高温退火,形成了Si纳米晶体。然后在纯SiO 2和含有纳米晶体的SiO 2中进行Er注入。发光测量表明,在含有纳米晶体的样品中,在1.54μm处的Er信号要比纯SiO2高两个数量级。激发光谱表明,虽然在SiO2 Er内部通过直接光子吸收而激发,但纳米晶体内部的激发是通过有效的载流子介导的过程发生的。这些数据表明,纳米晶体中几乎不存在通常限制Si中Er发光的非辐射过程。据报道,延伸到其他稀土元素(即Tm,Yb和Nd)表明可以适当调节发射的波长。讨论了这些结果的含义。 [参考:16]

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