标题: | 量子点雷射之杂讯特性与锁模特性之研究(I) Investigation on Noise Characteristics and Mode-Locking Properties of Quantum Dot Lasers(I) |
作者: | 林国瑞 Lin Kuo-Jui (Gray) 国立交通大学电子工程学系及电子研究所 |
关键字: | 相对杂讯强度;微分增益;增益压缩因子;量子点雷射;Relative Intensity Noise;Differential Gain;Gain Compression;Quantum Dot Lasers |
公开日期: | 2010 |
摘要: | 半导体量子点雷射以自组式量子点为增益介质,由于量子点独特的物理 特性(類原子能阶、空间独立性)与特殊的材料特性(非均匀展宽大、饱和 增益低、增益回復快),许多新奇的元件特性与新颖的元件应用陸续被提出。 在未來兩年的计画中,我们将深入研究量子点雷射的杂讯特性与锁模特性。 NSC99 计划中将建立半导体雷射之相对杂讯强度的量测技术,完成杂讯 位准的校正,依此萃取量子点雷射的共振频率与阻尼系數等元件參數,以及 微分增益与非线性增益系數等材料參數。我们将探讨基态与激态下雷射发光 的杂讯频谱,使用可调光濾波器研究雷射纵模之分割杂讯,并配合雷射速率 方程式模拟载子的动态特性。我们也将成长调变掺杂的多层量子点雷射,并 与先前计画中研制的量子点雷射一并以杂讯频谱分析其最大频宽,希望最佳 化磊晶结构与成长条件。 NSC100 计画中将研究量子点雷射的锁模特性,我们已于NSC97 中首次 发表砷化镓基板之单段式电极的自锁模量子点雷射,因此第二年计画要探讨 单段式电极下自锁模的优劣程度与操作范围,并架设二倍频之自相关干涉仪 來量测脉冲宽度。接着我们将制作兩段式电极偏压之被动锁模量子点雷射, 同样也要决定脉冲光的操作范围以及各项參數,最终目标希望获致宽度小于 5 ps,重复频率超过40 GHz 之高速短光脉冲。 Semiconductor quantum dot (QD) lasers are based on self-assembled growth of QDs as gain medium. Due to their particular physical properties, e.g. spatial localization with atomic-like energy levels, as well as special material properties, e.g. large inhomogeneous broadening, low saturated gain and fast gain recovery, many anomalous device characteristics and novel device applications are published recently. In this two-year project, we will study the noise characteristics and mode-locking properties of QD lasers. In NSC99, the relative intensity noise (RIN) measurement of semiconductor lasers will be setup and its RIN level will be calibrated. From RIN measurement, we could extract device parameters, e.g. resonance frequencies and damping factors, as well as material parameters, e.g. differential gain and nonlinear gain coefficient. We will investigate the noise characteristics between ground-state and excited-state lasing emissions, and study the mode partition noise by tunable optical filter. Multimode laser rate equations will be modeled to confirm the carrier dynamics. We will grow and investigate the modulation-doped QD lasers in this year. Together with those QD laser structures fabricated in previous NSC-Projects, they will be analyzed by RIN measurement to optimize their structure design. In NSC100, we will study the mode-locking properties of QD lasers. As we have published the first self-mode-locking in one-section QD lasers grown on GaAs substrate in NSC97, we will then investigate their completeness and region of self-mode-locking in this one-section configuration. The mode-locked optical pulse will be measured by the new setup of second-harmonic-generation interferometric autocorrelator in this year. We will also fabricate the separately-contacted, two-section QD lasers for passive mode-locking. The locking range and pulse parameters are to be determined as well. Our goal is to achieve high-speed, short optical pulse with pulse width smaller than 5 ps with pulse repetition higher than 40 GHz. |
官方说明文件#: | NSC99-2221-E009-176 |
URI: | http://hdl.handle.net/11536/100690 https://www.grb.gov.tw/search/planDetail?id=2115213&docId=338174 |
显示于类别: | Research Plans |