Klehr A, Wenzel H, Brox O, Schwertfeger S, Staske R, Erbert G
Ferdinand-Braun-Institut für Höchstfrequenztechnik Berlin, Gustav-Kirchhoff-Strasse 4, D-12489 Berlin, Germany.
Opt Express. 2013 Feb 11;21(3):2777-86. doi: 10.1364/OE.21.002777.
We present detailed experimental investigations of the temporal, spectral and spatial behavior of a gain-switched distributed feedback (DFB) laser emitting at a wavelength of 1064 nm. Gain-switching is achieved by injecting nearly rectangular shaped current pulses having a length of 50 ns and a very high amplitude up to 2.5 A. The repetition frequency is 200 kHz. The laser has a ridge waveguide (RW) for lateral waveguiding with a ridge width of 3 µm and a cavity length of 1.5 mm. Time resolved investigations show, depending on the amplitude of the current pulses, that the optical power exhibits different types of oscillatory behavior during the pulses, accompanied by changes in the lateral near field intensity profiles and optical spectra. Three different types of instabilities can be distinguished: mode beating with frequencies between 25 GHz and 30 GHz, switching between different lateral intensity profiles with a frequency of 0.4 GHz and self-sustained oscillations with a frequency of 4 GHz. The investigations are of great relevance for the utilization of gain-switched DFB-RW lasers as seed lasers for fiber laser systems and in other applications, which require a high optical power.
我们展示了对波长为1064 nm的增益开关分布反馈(DFB)激光器的时间、光谱和空间行为的详细实验研究。通过注入长度为50 ns、幅度高达2.5 A的近似矩形电流脉冲来实现增益开关。重复频率为200 kHz。该激光器具有用于横向波导的脊形波导(RW),脊宽为3 µm,腔长为1.5 mm。时间分辨研究表明,根据电流脉冲的幅度,光功率在脉冲期间呈现出不同类型的振荡行为,同时伴随着横向近场强度分布和光谱的变化。可以区分出三种不同类型的不稳定性:频率在25 GHz至30 GHz之间的模式拍频、频率为0.4 GHz的不同横向强度分布之间的切换以及频率为4 GHz的自持振荡。这些研究对于将增益开关DFB-RW激光器用作光纤激光系统及其他需要高光功率的应用中的种子激光器具有重要意义。