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1.ËùÒÔ£¬»ùÓÚÒÔÉÏ·ÖÎöÓбØÒª¶Ô metal/oxideºÍoxide/metalÕâÁ½ÖÖ²»Í¬½çÃæ ¶Ô×ÔÐý¼«»¯µç×ÓÊäÔË×÷½øÒ»²½µÄÑо¿£¬Õ⽫¶ÔÓÚÎÒÃÇÈÏʶÐÂÐ͵ç×Ó×ÔÐý²ÄÁϵÄÎïÀíÐÔÖÊ£¬Éè¼ÆºÍ·¢Õ¹Ð²ÄÁϽ«¾ßÓзdz£ÖØÒªµÄÎïÀíÒâÒå¡£![]() 2. in Co/Pt multilayers with oxide underneath and with oxide on the top Äܱí´ï³öÑõ»¯ÎïÔÚCo/Pt multilayers µ×²ãºÍ¶¥²ãµÄÕâһ˵·¨Âð? Ò²¾ÍÊÇÕâÁ½¸öÌåϵ xide/(Co/Pt ) ÒÔ¼° (Co/Pt )/oxide »òÕßÔõô±í´ï¸üºÃÄØ ? [ Last edited by ÄûÃÊÊ÷ on 2013-4-10 at 08:41 ] |
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ÄûÃÊÊ÷: ½ð±Ò+10, ·ÒëEPI+1, ¡ï¡ï¡ï¡ï¡ï×î¼Ñ´ð°¸, ·Ç³£ºÃ,·Ç³£¸Ðл 2013-04-10 14:27:15
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Ref only, please further modify: 1) So, based on the above analyses, it is necessary to further study the effect of the two different kinds of interfaces of metal/oxide and oxide/metal on the spin polarized transportation, which will not only be a great help in better understanding the physical properties of the novel electron spin materials, but also have significant physical impact on the design and development of novel materials. 2) in Co/Pt multilayers with oxide underneath and on the top, respectively. ûÓÐÎÊÌâ. Ó¦¸Ã¿ÉÒÔ. |

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xide/(Co/Pt ) ÒÔ¼° (Co/Pt )/oxide
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