标题: | 主动电光调变锁模半导体增益光纤雷射之研究 Study of an active EO modulation mode-locked fiber laser with a semiconductor amplifier gain medium |
作者: | 颜光廷 Yen, Kuang-Ting 赖暎杰 Lai,Yin-Chieh 显示科技研究所 |
关键字: | 半导体光放大器;电光调变;双波长锁模;semiconductor optical amplifier;EO modulation;dual wavelength mode-locking |
公开日期: | 2014 |
摘要: | 本论文主要使用电光相位调变作为主动锁模机制,以半导体光放大器作为增益介质,使用Lyot filter作为光滤波元件,实际制作出重复率为10 GHz、输出功率为 2 mW、脉冲宽度为 18 ps的锁模半导体光放大器光纤雷射。在实验上藉由控制极化和帮补电流大小,可将雷射之单波长锁模状态转变成双波长锁模状态。在单波长锁模态方面,我们使用色散补偿光纤作线性脉冲压缩,可将原先输出的脉冲宽度压到10 ps以下。在双波长锁模态方面,我们将脉冲序列传递在色散光纤中,利用两波长在传递上的时间差准确计算出光纤的色散值,所得计算值与实际值相当吻合,应可用来量测未知光纤的色散。 我们也将主动锁模机制由相位调变换成强度调变,在重复率为10 GHz 的情况下改变不同帮补电流大小和调变强度来记录光谱频宽(bandwidth)、脉冲宽度(pulse width)、时间-频宽乘积(time-bandwidth product)和超模抑制比(super-mode suppression ratio) 等特性,尝试比较相同架构下相位调变和强度调变锁模的差异 In this thesis study we mainly utilize EO phase modulation as the active mode-locking mechanism to build a mode-locked fiber laser. The semiconductor optical amplifier (SOA) is used as the gain medium and a fiber-type Lyot filter is inserted inside the laser cavity for optical filtering. The mode-locked SOA fiber laser can be operated at the single wavelength mode-locking state as well as the dual wavelength mode-locking state. Under single wavelength mode-locking, the laser can generate a 10 GHz pulse train with the average power of 2 mW and pulse width of 18 ps. The pulse width can be reduced below 10 ps by using a section of dispersion compensating fiber for external compression. Under dual wavelength mode-locking, if we let the output pulses propagate through a dispersive fiber, the fiber dispersion can be accurately calculated from the time delay change of the two pulses after a known propagating length. The calculated value is in excellent agreement with the known specification of the fiber. We have also replaced the phase modulation with the amplitude modulation for comparison. Under different pump currents and modulation intensities, the bandwidth, pulse width, time-bandwidth product and super-mode suppression ratio of the lasers are recorded. The results under the two modulation mechanisms in the same laser structure at the repetition rate of 10 GHz are carefully compared. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT070150607 http://hdl.handle.net/11536/76044 |
显示于类别: | Thesis |