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Surface Erosion of GaN Bombarded by Highly Charged 208Pb^q+-Ions 被引量:1

Surface Erosion of GaN Bombarded by Highly Charged 208Pb^q+-Ions
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摘要 Surface change of gallium nitride specimens after bombardment by highly charged Pbq^+-ions (q = 25, 35) at room temperature is studied by means of atomic force microscopy. The experimental results reveal that the surface of GaN specimens is significantly etched and erased. An unambiguous step-up is observed. The erosion depth not only strongly depends on the charge state of ions, but also is related to the incident angle of Pbq^+-ions and the ion dose. The erosion depth of the specimens in 60° incidence (tilted incidence) is significantly deeper than that of the normal incidence. The erosion behaviour of specimens has little dependence on the kinetic energy of ion (Ek = 360, 700 keV). On the other hand, surface roughness of the irradiated area is obviously decreased due to erosion compared with the un-irradiated area. A fiat terrace is formed. Surface change of gallium nitride specimens after bombardment by highly charged Pbq^+-ions (q = 25, 35) at room temperature is studied by means of atomic force microscopy. The experimental results reveal that the surface of GaN specimens is significantly etched and erased. An unambiguous step-up is observed. The erosion depth not only strongly depends on the charge state of ions, but also is related to the incident angle of Pbq^+-ions and the ion dose. The erosion depth of the specimens in 60° incidence (tilted incidence) is significantly deeper than that of the normal incidence. The erosion behaviour of specimens has little dependence on the kinetic energy of ion (Ek = 360, 700 keV). On the other hand, surface roughness of the irradiated area is obviously decreased due to erosion compared with the un-irradiated area. A fiat terrace is formed.
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2008年第7期2670-2673,共4页 中国物理快报(英文版)
基金 Supported by the National Natural Science Foundation of China under Crant No 10575124, the Chinese Academy of Science (Xi-Bu-Zhi-Guang Project), and the Director's Foundation of Institute of Modern Physics.
关键词 the power-law exponents precipitation durative abrupt precipitation change the power-law exponents, precipitation, durative, abrupt precipitation change
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