【24h】

Laser-induced nonthermal surface modification of aluminum

机译:激光诱导铝的非热表面改性

获取原文

摘要

Abstract: Low fluence UV laser stimulate desorption of ions form metal surfaces leads to the production of high kinetic energy species and also modifies the surface left behind. Both of these effects are small for an individual laser shot. The number density of the desorbed ions by the laser is very low - much less than a monolayer per pulse. The changes in the crystal surface are also subtle. However, in both cases there are cumulative effects after many laser shots which cannot be attributed to thermal or plasma pulse laser interaction processes. There is no evidence for thermal ions in the TOF mass spectrum. A laser ionization experiment was performed to measure the kinetic energy distribution of the desorbed neutral aluminum species. The high kinetic energy Al$+$PLU$/ ions were used as monitor for insuring that the laser induced desorption process was always in the non- thermal regime during the surface modification experiments. We observe, via SEM, surface modification only after exposure to a large number of laser shots. Examination of the laser exposed surface with electron microscopy reveals quasiperiodic patterns made up of sub-micron scale ridges. After exposures to more than 100K laser shots, the quasiperiodic patterns break-up into irregular nodule-like shapes. Our data indicates the surface modification occurs without desorbing significant amounts of material. !16
机译:摘要:低能量紫外线激光激发金属表面离子的解吸,导致产生高动能物质,并修饰留下的表面。对于单独的激光照射,这两种效果都很小。激光解吸的离子的数量密度非常低-每个脉冲比单层小得多。晶体表面的变化也很细微。但是,在这两种情况下,在多次激光照射后都会产生累积效应,这不能归因于热或等离子脉冲激光相互作用过程。在TOF质谱图中没有热离子的证据。进行了激光电离实验,以测量解吸的中性铝物质的动能分布。高动能Al $ + PLU $ /离子用作监测器,以确保在表面改性实验过程中,激光诱导的解吸过程始终处于非热态。我们仅在暴露于大量激光照射后才通过SEM观察到表面改性。用电子显微镜检查激光​​暴露的表面,发现由亚微米级脊构成的准周期性图案。暴露于超过100K的激光照射后,准周期模式分解为不规则的结节状形状。我们的数据表明发生了表面改性,而没有脱附大量的材料。 !16

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号