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IR femtosecond laser micro-filaments in diamond visualized by inter-band UV photoluminescence

机译:IR FemtoSecond激光微丝在钻石中被带间紫外线光致发光可视化

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摘要

Single microscale filaments were produced in monocrystalline Ia-type diamond by 1030 nm, 300 fs laser pulses tightly focused at NA = 0.3 and different peak powers, visualized by transverse imaging and spectrally characterized by longitudinal micro-spectroscopy, using intrinsic UV A-band photoluminescence (PL) with its peak at about 430 nm. Power-dependent scaling relationships for the local PL yield and diameters of the accompanying luminous micro-channels of recombining electron-hole plasma indicate a transition from three-photon absorption to free-carrier plasma absorption, as the consequent energy deposition mechanisms at increasing peak laser power. Power-dependent elongation of the luminous microchannels versus peak laser power fitted by a Marburger formula yields, on average a diffraction-based estimate of 0.6 MW critical power for self-focusing within the diamond at the pump laser wavelength of 1030 nm. (C) 2020 Optical Society of America
机译:通过1030nm,在单晶Ia型金刚石中产生单晶硅丝,300 fs激光脉冲在Na = 0.3和不同的峰值功率下,通过横向成像和纵向微谱的光谱表征,使用内在的UV A带光致发光,可视化。 (PL)峰值在约430纳米。 用于局部PL屈服和伴随的发光微通道的局部PL屈服和直径的幂依赖性缩放关系表明从三光子吸收到自由载体等离子体吸收的过渡,作为随后的峰值激光器的能量沉积机制 力量。 发光微通道的电源依赖性伸长率与马尔伯格配方产量的峰值激光功率,平均基于衍射的估计为0.6 MW临界功率,用于在泵激光波长为1030nm的钻石中自聚焦。 (c)2020美国光学学会

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