Highly oriented pyrolitic graphite (HOPG) samples were bombarded by different kinds of ions, including H, He, B, C, and Au, at an energy range from 530 keV to 4.5 MeV. After bombardment, the sample surfaces were observed with scanning tunneling microscopy. All these experimental results show that the energetic ions could cause observable protrusionlike damage on the HOPG surfaces. The ratio of the areal density of protrusion to the ion dose increases with the nuclear energy loss and is in the range of 10(-5) to 2. The possible mechanism of these phenomena is also discussed. (C) 1998 American Institute of Physics. [S0021-8979(98)06201-X].Physics, AppliedSCI(E)17ARTICLE31341-13448
A Raman investigation has been carried out on samples of ion irradiated highly-oriented pyrolytic gr...
The results on the study of surface structure of solids, like metals, metal alloys, amorphous metal ...
Samples of highly oriented pyrolytic graphite (HOPG) were irradiated by Si-n (n = 1, 2, 3, 4, 5) wit...
Highly oriented pyrolytic graphite (HOPG) samples were bombarded by Highly oriented pyrolytic graph...
The individual damage on high oriented pyrolytic graphite surface induced by gold ions of 530 keV - ...
Surface damage on highly oriented pyrolytic graphite induced by bombardment of 530 keV Au+ or 4.5 Me...
The target samples of 30-100 mum thick slices of kidney bean dry seeds and 8 and 72 mum ethylene ter...
In this work the author investigated damages on graphite surface generated by bombardment with 530 K...
The ripple topography of ion-beam–eroded surfaces offers a novel method to determine the shape of co...
International audienceHighly ordered pyrolitic graphite (HOPG) was irradiated with slow highly charg...
International audienceHighly ordered pyrolitic graphite (HOPG) was irradiated with slow highly charg...
International audienceHighly ordered pyrolitic graphite (HOPG) was irradiated with slow highly charg...
A Raman investigation has been carried out on samples of ion irradiated highly-oriented pyrolytic gr...
A Raman investigation has been carried out on samples of ion irradiated highly-oriented pyrolytic gr...
A Raman investigation has been carried out on samples of ion irradiated highly-oriented pyrolytic gr...
A Raman investigation has been carried out on samples of ion irradiated highly-oriented pyrolytic gr...
The results on the study of surface structure of solids, like metals, metal alloys, amorphous metal ...
Samples of highly oriented pyrolytic graphite (HOPG) were irradiated by Si-n (n = 1, 2, 3, 4, 5) wit...
Highly oriented pyrolytic graphite (HOPG) samples were bombarded by Highly oriented pyrolytic graph...
The individual damage on high oriented pyrolytic graphite surface induced by gold ions of 530 keV - ...
Surface damage on highly oriented pyrolytic graphite induced by bombardment of 530 keV Au+ or 4.5 Me...
The target samples of 30-100 mum thick slices of kidney bean dry seeds and 8 and 72 mum ethylene ter...
In this work the author investigated damages on graphite surface generated by bombardment with 530 K...
The ripple topography of ion-beam–eroded surfaces offers a novel method to determine the shape of co...
International audienceHighly ordered pyrolitic graphite (HOPG) was irradiated with slow highly charg...
International audienceHighly ordered pyrolitic graphite (HOPG) was irradiated with slow highly charg...
International audienceHighly ordered pyrolitic graphite (HOPG) was irradiated with slow highly charg...
A Raman investigation has been carried out on samples of ion irradiated highly-oriented pyrolytic gr...
A Raman investigation has been carried out on samples of ion irradiated highly-oriented pyrolytic gr...
A Raman investigation has been carried out on samples of ion irradiated highly-oriented pyrolytic gr...
A Raman investigation has been carried out on samples of ion irradiated highly-oriented pyrolytic gr...
The results on the study of surface structure of solids, like metals, metal alloys, amorphous metal ...
Samples of highly oriented pyrolytic graphite (HOPG) were irradiated by Si-n (n = 1, 2, 3, 4, 5) wit...