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首页> 外文期刊>Journal of Applied Physics >Evidence of feasible hardness test on Mars using ratio of ioniceutral emission intensities measured with laser-induced breakdown spectroscopy in low pressure CO_2 ambient gas
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Evidence of feasible hardness test on Mars using ratio of ioniceutral emission intensities measured with laser-induced breakdown spectroscopy in low pressure CO_2 ambient gas

机译:在低压CO_2环境气体中使用激光诱导击穿光谱法测量的离子/中性发射强度比在火星上进行可行的硬度测试的证据

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摘要

An experimental study is conducted on the possibility and viability of performing hardness measurement of the various stone and chert samples in low pressure (600 Pa) CO_2 ambient gas, a condition that is encountered in the Mars atmosphere. For this study, a nanosecond Nd-YAG laser is employed to generate plasma emission from the samples with different degrees of hardness. This technique is developed in light of the role of the shock wave in the generation of a laser-induced plasma. It was previously shown that the speed of the shock front depends on the hardness of the sample, and a positive relationship was found between the speed of the shock front and the ioniza-tion rate of the ablated atoms. Hence, the ratio of the intensity between the Mg Ⅱ 279.5 nm and Mg Ⅰ 285.2 nm emission lines detected from the laser-induced plasma can be used to estimate the hardness of a material. In fact, it is shown that the ratio changes linearly with respect to changes of sample hardness. The result has thus demonstrated the feasibility and viability of using LIBS for non contact hardness measurement on Mars.
机译:在火星大气中遇到的低压(600 Pa)CO_2环境气体中,对各种石头和performing石样品进行硬度测量的可能性和可行性进行了实验研究。对于本研究,使用纳秒级Nd-YAG激光器从具有不同硬度的样品中产生等离子体发射。鉴于冲击波在激光诱导等离子体的产生中的作用而开发了该技术。先前已经表明,激波锋的速度取决于样品的硬度,并且在激波锋的速度与烧蚀原子的电离速率之间发现正相关。因此,从激光诱导的等离子体中检测到的MgⅡ279.5 nm与MgⅠ285.2 nm发射线之间的强度比可以用来估计材料的硬度。实际上,表明该比率相对于样品硬度的变化线性变化。因此,结果证明了使用LIBS进行火星非接触硬度测量的可行性和可行性。

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  • 来源
    《Journal of Applied Physics》 |2016年第16期|163304.1-163304.5|共5页
  • 作者单位

    Department of Physics, Faculty of Mathematics and Natural Sciences, Syiah Kuala University, Darussalam,Banda Aceh 23111, NAD, Indonesia;

    Department of Electrical Engineering, University of Pelita Harapan, 1100 M.H. Thamrin Boulevard,hippo Village, Tangerang 15811, Indonesia;

    Department of Physics, Faculty of Mathematics and Natural Sciences, Udayana University, Kampus Bukit Jimbaran, Denpasar 80361, Bali, Indonesia;

    Department of Chemistry, Faculty of Mathematics and Natural Sciences, Syiah Kuala University,Darussalam, Banda Aceh 23111, NAD, Indonesia;

    Department of Physics, Faculty of Mathematics and Natural Sciences, Syiah Kuala University, Darussalam,Banda Aceh 23111, NAD, Indonesia;

    Department of Physics, Faculty of Mathematics and Natural Sciences, Jakarta State University,10 Rawamangun, Jakarta 13220, Indonesia;

    Department of Computer Engineering, Bina Nusantara University, 9 K.H. Syahdan, Jakarta 14810, Indonesia;

    Department of Computer Engineering, Bina Nusantara University, 9 K.H. Syahdan, Jakarta 14810, Indonesia,Research Center of Maju Makmur Mandiri Foundation, 40180 Srengseng Raya, Jakarta 11630, Indonesia;

    Research Center of Maju Makmur Mandiri Foundation, 40180 Srengseng Raya, Jakarta 11630, Indonesia;

    Research Center of Maju Makmur Mandiri Foundation, 40180 Srengseng Raya, Jakarta 11630, Indonesia;

    Research Center of Maju Makmur Mandiri Foundation, 40180 Srengseng Raya, Jakarta 11630, Indonesia;

    Research Center of Maju Makmur Mandiri Foundation, 40180 Srengseng Raya, Jakarta 11630, Indonesia;

    Research Center of Maju Makmur Mandiri Foundation, 40180 Srengseng Raya, Jakarta 11630, Indonesia,Physics of Magnetism and Photonics Group, Faculty of Mathematics and Natural Sciences, Bandung Institute of Technology, 10 Ganesha, Bandung 40132, Indonesia;

    Research Center of Maju Makmur Mandiri Foundation, 40180 Srengseng Raya, Jakarta 11630, Indonesia,Fukui Science Education Academy, Takagi Chuo 2 chome, Fukui 910-0804, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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