Sha G, Ringer S P
Australian Key Centre for Microscopy & Microanalysis, The University of Sydney, Madsen Building (F09), Sydney, NSW 2006, Australia.
Ultramicroscopy. 2009 Apr;109(5):580-4. doi: 10.1016/j.ultramic.2008.10.012. Epub 2008 Nov 5.
The effect of laser pulse energy on the composition measurement of an Al-Mg-Si-Cu alloy (AA6111) specimen has been investigated over a base temperature range of 20-80K and a voltage range of 2.5-5kV. Laser pulse energy must be sufficiently higher to achieve pulse-controlled field evaporation, which is at least 0.9nJ with a beam spot size of about 5microm, providing an equivalent voltage pulse fraction, approximately 14% at 80K for the alloy specimen. In contrast to the cluster composition, the measured specimen composition is sensitive to base temperature and laser energy changes. The exchange charge state under the influence of laser pulsing makes the detection of Si better at low base temperature, but detection of Cr and Mn is better at a higher temperature and using higher laser energy. No such effect occurs for detection of Mg and Cu under laser pulsing, although Mg concentration is sensitive to the analysis temperature under voltage pulsing. Mass resolution at full-width half-maximum is sensitive to local taper angle near the apex, but has little effect on composition measurement.
在20 - 80K的基温范围和2.5 - 5kV的电压范围内,研究了激光脉冲能量对Al - Mg - Si - Cu合金(AA6111)试样成分测量的影响。激光脉冲能量必须足够高,以实现脉冲控制的场蒸发,对于光斑尺寸约为5微米的情况,至少为0.9nJ,这为合金试样在80K时提供了约14%的等效电压脉冲分数。与团簇成分相比,测量的试样成分对基温和激光能量变化敏感。激光脉冲影响下的交换电荷态使得在低基温下对Si的检测更好,但在较高温度和使用较高激光能量时对Cr和Mn的检测更好。在激光脉冲下检测Mg和Cu时没有这种效应,尽管Mg浓度对电压脉冲下的分析温度敏感。半高宽处的质量分辨率对顶点附近的局部锥角敏感,但对成分测量影响不大。