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首页> 外文期刊>Applied Surface Science >Plasma Plume Induced During Arf Laser Ablation Of Hydroxyapatite
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Plasma Plume Induced During Arf Laser Ablation Of Hydroxyapatite

机译:羟基磷灰石的Arf激光烧蚀过程中诱导的等离子体羽

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Plasma plume induced by ArF excimer laser ablation of a hydroxyapatite (Ca_(10)(PO_4)_6(OH)_2) target was studied during expansion into a vacuum or water vapour. The ArF laser operated at a wavelength of 193 nm with a pulse energy of 300-350 mJ and a 20 ns pulse duration. The emission spectra of the plasma plume were registered with the use of a spectrograph and an ICCD camera. The expansion of the plasma plume was studied using the time of flight method. The time-dependent radiation of the Ca I and Ca II lines was registered with the use of a monochromator and photomultiplier at various distances from the target. The dynamics of the plasma plume was also imaged by means of fast photography. It was found that during expansion into a vacuum, the plasma front moved with a constant velocity of 1.75 × 10~4 m s~(-1), while in the case of ambient water vapour at a pressure of 20 Pa, velocities of 1.75 × 10~4 - 1.5 × 10~3 m s~(-1) were found depending on the distance from the target. Electron densities of 1.2 × 10~(24)-4.5 × 10~(21) m~(-3) were determined from the Stark broadening of the Ca II and Ca I lines at distances of 1-25 mm from the target. Temperatures of 11,500-4500 K were determined from the relative intensities of carbon lines and continuum radiation at distances of 4-29 mm from the target. The results allowed the estimation of thermal and kinetic energies of ablated particles. During expansion into a vacuum, the kinetic energies of Ca, P and O atoms were 64,49 and 25 eV, respectively. During expansion into water vapour, kinetic energies dropped to 0.47, 0.36 and 0.19 eV, respectively at a distance of 25 mm from the target and were comparable to the energies of thermal motion.
机译:研究了由ArF准分子激光烧蚀羟基磷灰石(Ca_(10)(PO_4)_6(OH)_2)靶材引起的等离子体羽流,该靶材在膨胀为真空或水蒸气期间。 ArF激光器以193 nm的波长工作,脉冲能量为300-350 mJ,脉冲持续时间为20 ns。等离子体羽的发射光谱通过光谱仪和ICCD相机进行记录。使用飞行时间方法研究了等离子体羽的膨胀。通过使用单色仪和光电倍增管,在距目标不同距离处记录了Ca I和Ca II线的时间依赖性辐射。血浆羽流的动力学也通过快速摄影成像。结果发现,在膨胀为真空期间,等离子体前沿以1.75×10〜4 ms〜(-1)的恒定速度运动,而在环境水蒸气压力为20 Pa的情况下,速度为1.75×根据距目标的距离,发现10〜4-1.5×10〜3 ms〜(-1)。由Ca II和Ca I线在距靶1-25 mm处的斯塔克加宽确定电子密度为1.2×10〜(24)-4.5×10〜(21)m〜(-3)。由碳线的相对强度和距靶标4-29 mm处的连续辐射确定了11,500-4500 K的温度。结果允许估计烧蚀颗粒的热能和动能。在膨胀至真空期间,Ca,P和O原子的动能分别为64.49和25 eV。在膨胀为水蒸气的过程中,动能在距目标25 mm处分别下降至0.47、0.36和0.19 eV,与热运动能相当。

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