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首页> 外文期刊>Applied optics >Nano-polymer-dispersed liquid crystal as phase modulator for a tunable vertical-cavity surface-emitting laser at 1.55 (mu)m
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Nano-polymer-dispersed liquid crystal as phase modulator for a tunable vertical-cavity surface-emitting laser at 1.55 (mu)m

机译:纳米聚合物分散液晶作为可调制垂直腔表面发射激光器的相位调制器,波长为1.55μm

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摘要

We demonstrate what we believe is the first nonmechanical tunable vertical-cavity surface-emitting laser operating in the C band. This was achieved as a result of the combination of an InGaAs quantum well structure with a 6lambda thickness tunable index nano-polymer-dispersed liquid-crystal material. Experimental results exhibited a potential tunable range close to 10 nm, in the preliminary version, and excellent single mode locking due to the side-mode suppression ratio (more than 20 dB) over the whole spectral range. Another decisive advantage, compared to mechanical solutions, was the tuning response time of a few tens of microseconds (>30 (mu)s) to scan the full spectral range (10 nm), making this device appropriate for some access network functions, as well as being robust and low cost. The voltage values are the main limitation to wavelength range extension. We present a first version of the device optically pumped. The next version will be electrically pumped as required for the access network applications targeted here.
机译:我们证明了我们认为是在C波段工作的第一台非机械可调垂直腔表面发射激光器。这是由于将InGaAs量子阱结构与6λ厚度可调折射率的纳米聚合物分散的液晶材料结合在一起而实现的。在初步版本中,实验结果显示出潜在的可调范围接近10 nm,并且由于在整个光谱范围内的侧模抑制比(大于20 dB)而具有出色的单模锁定。与机械解决方案相比,另一个决定性的优势是扫描整个光谱范围(10 nm)时的调谐响应时间为几十微秒(> 30μs),这使得该设备适合某些接入网络功能,例如坚固耐用且成本低廉。电压值是扩展波长范围的主要限制。我们介绍了光泵设备的第一个版本。下一个版本将根据此处目标接入网络应用的需要进行电动抽水。

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