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1.55-μm optically pumped tunable VCSEL based on a nano-polymer dispersive liquid crystal phase modulator

机译:基于纳米聚合物色散液晶相位调制器的1.55μm光泵浦可调VCSEL

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We present a new approach to achieve tunability on a 1.55 μm vertical cavity surface emitting laser (VCSEL). Tunability is achieved thanks to an electro-optic index modulator. This electro-optic material consists in a n-PDLC phase layer introduced inside the VCSEL cavity. N-PDLC comprises nematic liquid crystal dispersed in a polymer material. This first VCSEL exhibits a 10 nm tuning range and an excellent side-mode suppression ratio higher than 20 dB over the whole spectral range. The device is formed by a conventional InP-based active region with an epitaxial and a dielectric Bragg mirror. The n-PDLC layer length, close to 6 um, is in agreement with a tunable laser emission without mode-hopping. Another decisive advantage, compared to mechanical solutions, is the tuning response time which is close to a few 10 μs to scan the full spectral range, making this device appropriate for some access network functions. Voltage values are the main limiting factor, 170 Volts have been required to obtain 10 nm tunability, but material engineering is in progress to improve this point. We presented a first version of the device optically pumped, the next version will be electrically pumped as required for access network applications targeted here.
机译:我们提出了一种在1.55μm垂直腔表面发射激光器(VCSEL)上实现可调性的新方法。由于采用了电光折射率调制器,因此可实现可调性。该电光材料包含在VCSEL腔体内引入的n-PDLC相层。 N-PDLC包括分散在聚合物材料中的向列液晶。该第一VCSEL的调谐范围为10 nm,在整个光谱范围内的侧模抑制比均高于20 dB。该器件由具有外延和介电布拉格镜的常规基于InP的有源区形成。 n-PDLC层的长度接近6 um,与无模跳变的可调激光发射一致。与机械解决方案相比,另一个决定性的优势是调谐响应时间接近10μs以扫描整个光谱范围,从而使该设备适合某些接入网络功能。电压值是主要的限制因素,需要170伏才能获得10 nm可调性,但是材料工程正在进行中以改善这一点。我们介绍了光泵浦设备的第一个版本,下一个版本将根据此处针对接入网络应用的需要进行电泵浦。

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