Mateo C M N, Brauch U, Schwarzbäck T, Kahle H, Jetter M, Abdou Ahmed M, Michler P, Graf T
Opt Express. 2015 Feb 9;23(3):2472-86. doi: 10.1364/OE.23.002472.
The performance of a 665-nm GaInP disk laser operated continuous-wave at 15°C both in-well-pumped at 640 nm and barrier pumped at 532 nm is reported. The efficiency with respect to the absorbed power was enhanced by 3.5 times when using a 640-nm pump instead of a 532-nm pump. In-well pumping which is based on the absorption of the pump photons within the quantum-well heterostructures of the gain region instead of short-wavelength absorption in the barrier and spacer regions reduces the quantum defect between pump and laser photon and hence the heat generation. A slope efficiency of 60% with respect to the absorbed pump power was obtained by in-well pumping at 15°C. Continuous-wave laser operation was further demonstrated at heat sink temperatures of up to 55°C. Both the measurement of photoluminescence and COMSOL simulation show that the overall heat load in the in-well pumped laser is smaller than in the barrier-pumped laser. These results demonstrate the potential of optical in-well pumping for the operation of red AlGaInP disk lasers if combined with means for efficient pump-light absorption.
报道了一台665纳米的GaInP盘形激光器在15°C下连续波工作的性能,该激光器采用640纳米的阱内泵浦和532纳米的势垒泵浦。与使用532纳米泵浦相比,使用640纳米泵浦时,相对于吸收功率的效率提高了3.5倍。阱内泵浦是基于增益区量子阱异质结构内泵浦光子的吸收,而不是势垒和间隔区中的短波长吸收,这减少了泵浦光子与激光光子之间的量子缺陷,从而减少了热量产生。在15°C下通过阱内泵浦获得了相对于吸收泵浦功率60%的斜率效率。在高达55°C的热沉温度下进一步演示了连续波激光运行。光致发光测量和COMSOL模拟均表明,阱内泵浦激光器的总热负荷小于势垒泵浦激光器。这些结果表明,如果与高效泵浦光吸收手段相结合,光学阱内泵浦对于红色AlGaInP盘形激光器的运行具有潜力。