Bayram S B, Coons R W
Department of Physics, Miami University, Oxford, Ohio 45056, USA.
Rev Sci Instrum. 2007 Nov;78(11):116103. doi: 10.1063/1.2804015.
The average spectral bandwidth of a 2 W broad-area diode laser was narrowed to 5 GHz with wavelength tunability of up to 12 nm at a center wavelength of 790 nm with the use of a Littman-Metcalf external cavity in a displaced configuration. The use of lens and combined lens-laser transformation systems allowed precise alignment of the beam shaping optics, which led to significant improvements of the beam quality and an enhanced suppression of the free-running laser modes. We characterize the spatial beam quality of our external cavity diode laser by measuring the M2 quality factor and relate this to our measured bandwidths. Our external cavity can be configured over a range of cavity lengths and is modular in design, enabling access to a broad frequency spectrum for a wide range of applications that require high-power, narrow bandwidth operation.
通过在位移配置中使用 Littman-Metcalf 外腔,一个 2W 宽面二极管激光器的平均光谱带宽被窄化至 5GHz,在中心波长 790nm 处具有高达 12nm 的波长可调性。透镜和透镜 - 激光器组合变换系统的使用实现了光束整形光学器件的精确对准,这显著改善了光束质量并增强了对自由运行激光模式的抑制。我们通过测量 M² 品质因数来表征外腔二极管激光器的空间光束质量,并将其与我们测量的带宽相关联。我们的外腔可以在一系列腔长范围内配置,并且设计为模块化,能够为需要高功率、窄带宽运行的广泛应用提供宽频谱接入。