Abstract
Nominally pure LiF crystals were irradiated by Kr ions (210 MeV) at fluences of 1010-1014 cm-2 and changes in the optical absorption and microhardness investigated. These results were compared with those obtained from high-energy (5 MeV) electron irradiation. Under electron irradiation, microhardness increased only after F-centre saturation, but Kr ion bombardment was able to increase the microhardness with only a small dose. Under electron bombardment at a fluence of 1017 cm-2 the MH increased by a factor of 2, whereas under ion bombardment the MH increased by a factor of 3. The increase in MH is assumed to be connected to a slowdown of dislocations at radiation defects. These defects cannot be point defects, such as F-centres, or simple aggregate centres, such as F2 and F3 or the hole centres complementary to them, because dislocation does not detect these centres. The slowdown is apparently caused by a defect containing no fewer than six particles.
| Original language | English |
|---|---|
| Pages (from-to) | 340-342 |
| Number of pages | 3 |
| Journal | Surface and Coatings Technology |
| Volume | 103-104 |
| DOIs | |
| Publication status | Published - May 1998 |
Keywords
- Dislocation
- Lithium fluoride
- Microhardness
- Surface
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