Effect of magnetic field on microhardness of germanium
Microhardness variations in germanium crystals caused by a weak constant magnetic field have been studied. It is fount that the magnetomechanical effect, that is relative change in microhardness, becomes relaxed in time. The results obtained indicate that the effect physical nature is related to spi...
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| Опубліковано в: : | Functional Materials |
|---|---|
| Дата: | 2007 |
| Автори: | , , , , , |
| Формат: | Стаття |
| Мова: | English |
| Опубліковано: |
НТК «Інститут монокристалів» НАН України
2007
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| Онлайн доступ: | https://nasplib.isofts.kiev.ua/handle/123456789/136441 |
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| Назва журналу: | Digital Library of Periodicals of National Academy of Sciences of Ukraine |
| Цитувати: | Effect of magnetic field on microhardness of germanium / V.A. Makara, L.P. Steblenko, A.M. Kuryliuk, S.M. Naumenko, Iu.L. Kolchenko, V.M. Kravchenko // Functional Materials. — 2007. — Т. 14, № 1. — С. 74-76. — Бібліогр.: 6 назв. — англ. |
Репозитарії
Digital Library of Periodicals of National Academy of Sciences of Ukraine| id |
nasplib_isofts_kiev_ua-123456789-136441 |
|---|---|
| record_format |
dspace |
| spelling |
Makara, V.A. Steblenko, L.P. Kuryliuk, A.M. Naumenko, S.M. Kolchenko, Iu.L. Kravchenko, V.M. 2018-06-16T12:28:01Z 2018-06-16T12:28:01Z 2007 Effect of magnetic field on microhardness of germanium / V.A. Makara, L.P. Steblenko, A.M. Kuryliuk, S.M. Naumenko, Iu.L. Kolchenko, V.M. Kravchenko // Functional Materials. — 2007. — Т. 14, № 1. — С. 74-76. — Бібліогр.: 6 назв. — англ. 1027-5495 https://nasplib.isofts.kiev.ua/handle/123456789/136441 Microhardness variations in germanium crystals caused by a weak constant magnetic field have been studied. It is fount that the magnetomechanical effect, that is relative change in microhardness, becomes relaxed in time. The results obtained indicate that the effect physical nature is related to spin-depentent reactions in the subsystem of point defects. en НТК «Інститут монокристалів» НАН України Functional Materials Effect of magnetic field on microhardness of germanium Вплив магнітного поля на мікротвердість германію Article published earlier |
| institution |
Digital Library of Periodicals of National Academy of Sciences of Ukraine |
| collection |
DSpace DC |
| title |
Effect of magnetic field on microhardness of germanium |
| spellingShingle |
Effect of magnetic field on microhardness of germanium Makara, V.A. Steblenko, L.P. Kuryliuk, A.M. Naumenko, S.M. Kolchenko, Iu.L. Kravchenko, V.M. |
| title_short |
Effect of magnetic field on microhardness of germanium |
| title_full |
Effect of magnetic field on microhardness of germanium |
| title_fullStr |
Effect of magnetic field on microhardness of germanium |
| title_full_unstemmed |
Effect of magnetic field on microhardness of germanium |
| title_sort |
effect of magnetic field on microhardness of germanium |
| author |
Makara, V.A. Steblenko, L.P. Kuryliuk, A.M. Naumenko, S.M. Kolchenko, Iu.L. Kravchenko, V.M. |
| author_facet |
Makara, V.A. Steblenko, L.P. Kuryliuk, A.M. Naumenko, S.M. Kolchenko, Iu.L. Kravchenko, V.M. |
| publishDate |
2007 |
| language |
English |
| container_title |
Functional Materials |
| publisher |
НТК «Інститут монокристалів» НАН України |
| format |
Article |
| title_alt |
Вплив магнітного поля на мікротвердість германію |
| description |
Microhardness variations in germanium crystals caused by a weak constant magnetic field have been studied. It is fount that the magnetomechanical effect, that is relative change in microhardness, becomes relaxed in time. The results obtained indicate that the effect physical nature is related to spin-depentent reactions in the subsystem of point defects.
|
| issn |
1027-5495 |
| url |
https://nasplib.isofts.kiev.ua/handle/123456789/136441 |
| citation_txt |
Effect of magnetic field on microhardness of germanium / V.A. Makara, L.P. Steblenko, A.M. Kuryliuk, S.M. Naumenko, Iu.L. Kolchenko, V.M. Kravchenko // Functional Materials. — 2007. — Т. 14, № 1. — С. 74-76. — Бібліогр.: 6 назв. — англ. |
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| first_indexed |
2025-11-27T14:20:40Z |
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2025-11-27T14:20:40Z |
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