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碩士 === 國立中央大學 === 物理研究所 === 92 === Sputtering of neutral and ionic atoms and molecules from surfaces of astronomical materials is an important process from mass transfer, mass evolution, and chemical evolution points of view. In a number of astronomical environments, e.g., comets, asteroids, p...

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Main Authors: kuan-hei Lee, 李冠輝
Other Authors: none
Format: Others
Language:zh-TW
Published: 2004
Online Access:http://ndltd.ncl.edu.tw/handle/52887934872419376052
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spelling ndltd-TW-092NCU051980212015-10-13T13:04:43Z http://ndltd.ncl.edu.tw/handle/52887934872419376052 none 純水、純水加二氧化碳及純水加氨三種不同冰晶在氫氣微波放電管光源照射下的總離子脫附率 kuan-hei Lee 李冠輝 碩士 國立中央大學 物理研究所 92 Sputtering of neutral and ionic atoms and molecules from surfaces of astronomical materials is an important process from mass transfer, mass evolution, and chemical evolution points of view. In a number of astronomical environments, e.g., comets, asteroids, planetary satellites and rings, and interplanetary dust grains, the yield, including ion and neutral desorption, will allow us to determine the erosion rate due to electronic excitation processes, which may be very important in cases where solar VUV-EUV photons can reach the surfaces of icy bodies. This experiment collected sputtered ions from ices which were illuminated by VUV from a microwave-stimulated hydrogen flow discharge lamp with main emission at Lyman-α at 121.6 nm. The measured ion current will be one of the vital factors in understanding mass evolution of ices on the interstellar matters. The total ion yields of H2O、H2O+CO2、H2O+NH3 three different ices prepared at 77 K were found to be 0.00065 ions/photon in H2O ice, 0.00058 ions/photon in H2O+CO2 ice, 0.00044 ions/photon in H2O+ NH3 ice. The results agrees quite well with the experimental data measured by C. Y. Robert Wu although the later work was reported using a 58.4 nm lamp instead of 121.6 nm in this case. none 易台生 2004 學位論文 ; thesis 31 zh-TW
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description 碩士 === 國立中央大學 === 物理研究所 === 92 === Sputtering of neutral and ionic atoms and molecules from surfaces of astronomical materials is an important process from mass transfer, mass evolution, and chemical evolution points of view. In a number of astronomical environments, e.g., comets, asteroids, planetary satellites and rings, and interplanetary dust grains, the yield, including ion and neutral desorption, will allow us to determine the erosion rate due to electronic excitation processes, which may be very important in cases where solar VUV-EUV photons can reach the surfaces of icy bodies. This experiment collected sputtered ions from ices which were illuminated by VUV from a microwave-stimulated hydrogen flow discharge lamp with main emission at Lyman-α at 121.6 nm. The measured ion current will be one of the vital factors in understanding mass evolution of ices on the interstellar matters. The total ion yields of H2O、H2O+CO2、H2O+NH3 three different ices prepared at 77 K were found to be 0.00065 ions/photon in H2O ice, 0.00058 ions/photon in H2O+CO2 ice, 0.00044 ions/photon in H2O+ NH3 ice. The results agrees quite well with the experimental data measured by C. Y. Robert Wu although the later work was reported using a 58.4 nm lamp instead of 121.6 nm in this case.
author2 none
author_facet none
kuan-hei Lee
李冠輝
author kuan-hei Lee
李冠輝
spellingShingle kuan-hei Lee
李冠輝
none
author_sort kuan-hei Lee
title none
title_short none
title_full none
title_fullStr none
title_full_unstemmed none
title_sort none
publishDate 2004
url http://ndltd.ncl.edu.tw/handle/52887934872419376052
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AT lǐguānhuī chúnshuǐchúnshuǐjiāèryǎnghuàtànjíchúnshuǐjiāānsānzhǒngbùtóngbīngjīngzàiqīngqìwēibōfàngdiànguǎnguāngyuánzhàoshèxiàdezǒnglízituōfùlǜ
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