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Thermally driven optical switching in Bi nanostructures

机译:Bi纳米结构中的热驱动光开关

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摘要

Thermally induced transmission and reflectivity changes are investigated in thin films formed by Bi nanostructures embedded in amorphous Al_2O_3. The Bi nanostructures are formed by coalesced nanoparticles forming a quasi-network close to the percolation threshold. Upon heating above the Bi melting temperature (>574 K), the transmission of the film increases abruptly, up to 18 percent in respect to the initial value, which is related to Bi melting. Upon cooling, the high transmission state remains up to temperatures as low as 436 K, thus evidencing a wide melting-solidification hysteresis cycle. The existence of transient morphological changes within the embedded nanostructure related to the contraction of Bi upon melting seems to have a significant contribution to the large transmission contrast between the molten and solid states of the Bi nanostructures. This large contrast together with the large width of the cycle makes this nanostructured film promising for a thermally driven optical switch.
机译:研究了由埋在非晶态Al_2O_3中的Bi纳米结构形成的薄膜中热诱导的透射率和反射率的变化。 Bi纳米结构由聚结的纳米颗粒形成,形成接近于渗滤阈值的准网络。当加热到Bi熔化温度(> 574 K)以上时,薄膜的透射率突然增加,相对于与Bi熔化有关的初始值最高增加18%。冷却后,高透射率状态最高可保持低至436 K的温度,从而证明了宽的熔凝凝固滞后循环。嵌入的纳米结构中与Bi熔化时的收缩有关的瞬态形态变化的存在似乎对Bi纳米结构的熔融态和固态之间的大透射比有重大贡献。这种大的对比度以及较大的循环宽度使这种纳米结构薄膜有望用于热驱动光学开关。

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