论文标题
通过空腔形状对宽面积半导体激光器的敏感控制
Sensitive control of broad-area semiconductor lasers by cavity shape
论文作者
论文摘要
光腔的射线动力学表现出分叉点:射线轨迹在稳定和不稳定之间突然切换的特殊几何形状。一个突出的例子是Fabry-Perrot腔,带有两个平面镜,该腔广泛用于宽面积半导体激光器。这些空腔支持在相对较少的横向模式下进行激光,并且激光极容易受到细丝和不规则搏动。在这里,我们在实验上证明了与这个分叉点(平面腔)的略有偏差极大地改变了激光性能。在带有两个凹面镜的接近平面腔中,横向激光模式的数量急剧增加。虽然降低了激光发射的空间连贯性,但输出梁的差异角保持相对狭窄。此外,与Fabry-Perot腔相比,时空激光动力学变得更加稳定。我们的近平面宽面积半导体激光器具有更高的亮度,更好的方向性,因此比白炽灯更短,同时具有足够低的斑点对比度,使其成为无斑点无斑点成像的极好的光源。此外,我们可以在分叉点附近控制具有极高灵敏度的时空动力学方法,可以应用于其他类型的高功率激光器和非线性动态系统。
The ray dynamics of optical cavities exhibits bifurcation points: special geometries at which ray trajectories switch abruptly between stable and unstable. A prominent example is the Fabry-Perot cavity with two planar mirrors, which is widely employed for broad-area semiconductor lasers. Such cavities support lasing in a relatively small number of transverse modes, and the laser is highly susceptible to filamentation and irregular pulsations. Here we demonstrate experimentally that a slight deviation from this bifurcation point (planar cavity) dramatically changes the laser performance. In a near-planar cavity with two concave mirrors, the number of transverse lasing modes increases drastically. While the spatial coherence of the laser emission is reduced, the divergence angle of the output beam remains relatively narrow. Moreover, the spatio-temporal lasing dynamics becomes significantly more stable compared to that in a Fabry-Perot cavity. Our near-planar broad-area semiconductor laser has higher brightness, better directionality and hence allows shorter integration times than an incandescent lamp while featuring sufficiently low speckle contrast at the same time, making it a vastly superior light source for speckle-free imaging. Furthermore, our method of controlling spatio-temporal dynamics with extreme sensitivity near a bifurcation point may be applied to other types of high-power lasers and nonlinear dynamic systems.