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Transmission measurement based on STM observation to detect the penetration depth of low-energy heavy ions in botanic samples

机译:基于STM观测的透射率测量以检测植物样品中低能重离子的渗透深度

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The penetration depth of low-energy heavy ions in botanic samples was detected with a new transmission measurement. In the measurement, highly oriented pyrolytic graphite (HOPG) pieces were placed behind the botanic samples with certain thickness. During the irradiation of heavy ions with energy of tens of keV, the energetic particles transmitted from those samples were received by the HOPG pieces. After irradiation, scanning tunneling microscope (STM) was applied to observe protrusion-like damage induced by these transmitted ions on the surface of the HOPG. The statistical average number density of protrusions and the minimum transmission rate of the low-energy heavy ions can be obtained. The detection efficiency of the new method for low-energy heavy ions was about 0.1-1 and the background in the measurement can be reduced to as low as 1.0 x 10(8) protrusions/cm(2). With this method, the penetration depth of the energetic particles was detected to be no less than 60 mum in kidney bean slices when the slices were irradiated by 100 keV Ar+ ion at the fluence of 5 x 10(16) ions/cm(2). (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 14]
机译:低能重离子在植物样品中的渗透深度可以通过新的透射测量方法进行检测。在测量中,将高度取向的热解石墨(HOPG)片放置在植物样品的后方,并具有一定的厚度。在以数十keV的能量辐照重离子时,HOPG碎片接收了从那些样品传输来的高能粒子。辐照后,应用扫描隧道显微镜(STM)观察HOPG表面上这些透射离子引起的突起样损伤。可以获得统计的平均突起密度和低能量重离子的最小透射率。新方法对低能重离子的检测效率约为0.1-1,并且测量的本底可以降低至1.0 x 10(8)个突起/ cm(2)。用这种方法,当能量密度为5 x 10(16)离子/ cm(2)的100 keV Ar +离子辐照时,高能粒子在菜豆片中的渗透深度不小于60微米。 。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:14]

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