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'Femtosecond laser ablation of cadmium tungstate for scintillator arrays '

机译:“用于闪烁体阵列的钨酸镉飞秒激光烧蚀”

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摘要

Ultrafast pulsed laser ablation has been investigated as a technique to machine CdWO4 single crystal scintillator and segment it into small blocks with the aim of fabricating a 2D high energy X-ray imaging array. Cadmium tungstate (CdWO4) is a brittle transparent scintillator used for the detection of high energy X-rays and γ-rays. A 6 W Yb:KGW Pharos-SP pulsed laser of wavelength 1028 nm was used with a tuneable pulse duration of 10 ps to 190 fs, repetition rate of up to 600 kHz and pulse energies of up to 1 mJ was employed. The effect of varying the pulse duration, pulse energy, pulse overlap and scan pattern on the laser induced damage to the crystals was investigated. A pulse duration of ≥500 fs was found to induce substantial cracking in the material. The laser induced damage was minimised using the following operating parameters: a pulse duration of 190 fs, fluence of 15.3 J cm−2 and employing a serpentine scan pattern with a normalised pulse overlap of 0.8. The surface of the ablated surfaces was studied using scanning electron microscopy, energy dispersive X-ray spectroscopy, atomic force microscopy and X-ray photoelectron spectroscopy. Ablation products were found to contain cadmium tungstate together with different cadmium and tungsten oxides. These laser ablation products could be removed using an ammonium hydroxide treatment.
机译:超快脉冲激光烧蚀已被研究为加工CdWO4单晶闪烁体并将其分割成小块的技术,目的是制造2D高能X射线成像阵列。钨酸镉(CdWO4)是一种易碎的透明闪烁体,用于检测高能X射线和γ射线。使用波长为1028 nm的6 W Yb:KGW Pharos-SP脉冲激光器,其可调脉冲持续时间为10 ps至190 fs,重复频率高达600 kHz,脉冲能量高达1 mJ。研究了改变脉冲持续时间,脉冲能量,脉冲重叠和扫描模式对激光诱导的晶体损伤的影响。发现≥500 fs的脉冲持续时间会引起材料的大量开裂。使用以下操作参数将激光引起的损坏最小化:脉冲持续时间190 fs,能量通量15.3 J cm-2,并采用具有0.8归一化脉冲重叠的蛇形扫描模式。使用扫描电子显微镜,能量色散X射线光谱,原子力显微镜和X射线光电子能谱研究烧蚀表面的表面。发现烧蚀产物含有钨酸镉以及不同的氧化镉和氧化钨。这些激光烧蚀产物可以使用氢氧化铵处理去除。

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