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Growth, optical characterization, and laser operation of a stoichiometric crystal KYb(WO4)(2)

机译:化学计量晶体KYb(WO4)(2)的生长,光学表征和激光操作

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摘要

We present our recent achievements in the growing and optical characterization of KYb(WO4)2 (hereafter KYbW) crystals and demonstrate laser operation in this stoichiometric material. Single crystals of KYbW with optimal crystalline quality have been grown by the top-seeded-solution growth slow-cooling method. The optical anisotropy of this monoclinic crystal has been characterized, locating the tensor of the optical indicatrix and measuring the dispersion of the principal values of the refractive indices as well as the thermo-optic coefficients. Sellmeier equations have been constructed valid in the visible and near-IR spectral range. Raman scattering has been used to determine the phonon energies of KYbW and a simple physical model is applied for classification of the lattice vibration modes. Spectroscopic studies (absorption and emission measurements at room and low temperature) have been carried out in the spectral region near 1 µm characteristic for the ytterbium transition. Energy positions of the Stark sublevels of the ground and the excited state manifolds have been determined and the vibronic substructure has been identified. The intrinsic lifetime of the upper laser level has been measured taking care to suppress the effect of reabsorption and the intrinsic quantum efficiency has been estimated. Lasing has been demonstrated near 1074 nm with 41% slope efficiency at room temperature using a 0.5 mm thin plate of KYbW. This laser material holds great promise for diode pumped high-power lasers, thin disk and waveguide designs as well as for ultrashort (ps/fs) pulse laser systems.
机译:我们介绍了我们在KYb(WO4)2(以下称KYbW)晶体的生长和光学表征方面的最新成就,并证明了这种化学计量材料的激光操作。通过顶部种子溶液生长缓慢冷却法已经生长出具有最佳晶体质量的KYbW单晶。已经对该单斜晶体的光学各向异性进行了表征,确定了光学指标的张量,并测量了折射率和热光系数的主值的色散。 Sellmeier方程在可见光和近红外光谱范围内均有效。拉曼散射已用于确定KYbW的声子能量,并且将简单的物理模型应用于晶格振动模式的分类。光谱研究(室温和低温下的吸收和发射测量)已经在characteristic跃迁特征的接近1 µm的光谱区域中进行了研究。确定了地面和激发态流形的斯塔克子能级的能量位置,并确定了振动子结构。在测量高激光能级的本征寿命时,要谨慎地抑制再吸收的影响,并已估算出本征量子效率。已经证明,使用0.5 mm的KYbW薄板在室温下,激光发射接近1074 nm,斜率效率为41%。这种激光材料对于二极管泵浦大功率激光器,薄盘和波导设计以及超短(ps / fs)脉冲激光系统具有广阔的前景。

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