Ua hana nā ʻepekema mai MIPT i kahi ala i ka hiki ʻana mai o kahi "flash drive" hou.

ʻO ka hana ʻana a me ka hoʻomohala ʻana i nā mea hana no ka mālama ʻole ʻana o ka ʻikepili kikohoʻe ke hele nei no nā makahiki he nui. Ua hana ʻia kahi holomua maoli ma mua o 20 mau makahiki i hala e ka hoʻomanaʻo NAND, ʻoiai ua hoʻomaka kona hoʻomohala ʻana i 20 mau makahiki ma mua. I kēia lā, ma kahi o ka hapalua haneli ma hope o ka hoʻomaka ʻana o ka noiʻi nui, ka hoʻomaka ʻana o ka hana a me ka hoʻoikaika mau ʻana e hoʻomaikaʻi i ka NAND, kokoke kēia ʻano hoʻomanaʻo i ka hoʻopau ʻana i kona hiki ke hoʻomohala. Pono e kau i ke kumu no ka hoʻololi ʻana i kahi kelepona hoʻomanaʻo ʻē aʻe me ka ikehu maikaʻi, ka wikiwiki a me nā ʻano ʻē aʻe. I ka wā lōʻihi, ʻo ia ʻano hoʻomanaʻo he ʻano hou o ka hoʻomanaʻo ferroelectric.

Ua hana nā ʻepekema mai MIPT i kahi ala i ka hiki ʻana mai o kahi "flash drive" hou.

ʻO Ferroelectrics (ua hoʻohana ʻia ka huaʻōlelo ferroelectrics ma nā palapala haole) he mau dielectrics i hoʻomanaʻo i ke kahua uila i hoʻopili ʻia a i ʻole, ʻike ʻia e ke koena polarization o nā uku. ʻAʻole mea hou ka hoʻomanaʻo Ferroelectric. ʻO ka paʻakikī ka hoʻonui ʻana i nā cell ferroelectric i lalo i ka pae nanoscale.

ʻEkolu makahiki i hala aku nei, ʻo nā ʻepekema ma MIPT hōʻike ʻia ʻenehana no ka hana ʻana i nā mea kiʻiʻoniʻoni lahilahi no ka hoʻomanaʻo ferroelectric ma muli o ka hafnium oxide (HfO2). ʻAʻole kēia mea ʻokoʻa. Ua hoʻohana ʻia kēia dielectric no nā makahiki ʻelima i ka lālani e hana i nā transistors me nā ʻīpuka metala i nā mea hana a me nā loina kikohoʻe ʻē aʻe. Ma muli o nā kiʻiʻoniʻoni polycrystalline o ka hafnium a me ka zirconium oxides me ka mānoanoa o 2,5 nm i manaʻo ʻia ma MIPT, hiki ke hana i nā hoʻololi me nā waiwai ferroelectric.

I mea e hoʻohana ʻia ai nā capacitors ferroelectric (e like me kā lākou i hoʻomaka ai e kapa ʻia ma MIPT) e like me nā cell memory, pono e hoʻokō i ka polarization kiʻekiʻe loa, e koi ana i kahi noiʻi kikoʻī o nā kaʻina hana kino i ka nanolayer. Ma keʻano kūikawā, e kiʻi i ka manaʻo o ka hoʻohele ʻana o ka mana uila i loko o ka papa i ka wā e hoʻohana ʻia ai ka uila. A hiki i kēia manawa, hiki i nā ʻepekema ke hilinaʻi wale i kahi mea makemakika e wehewehe i ke ʻano, a i kēia manawa ua hoʻokō ʻia kahi ʻenehana i hiki ke nānā pono i loko o ka mea i ka wā o ke kaʻina hana.

Ua hana nā ʻepekema mai MIPT i kahi ala i ka hiki ʻana mai o kahi "flash drive" hou.

ʻO ka ʻenehana i manaʻo ʻia, i hoʻokumu ʻia ma ke kiʻekiʻe X-ray photoelectron spectroscopy, hiki ke hoʻokō wale ʻia ma kahi hoʻonohonoho kūikawā (synchrotron accelerators). Aia kēia ma Hamburg (Kelemānia). ʻO nā hoʻokolohua āpau me ka hafnium oxide-based "ferroelectric capacitors" i hana ʻia ma MIPT i hana ʻia ma Kelemānia. Ua paʻi ʻia kahi ʻatikala e pili ana i ka hana i hana ʻia ma Nanoscale.

"ʻO nā capacitors ferroelectric i hana ʻia i loko o kā mākou hale hana, inā hoʻohana ʻia no ka hana ʻenehana o nā cell memory non-volatile, hiki iā lākou ke hāʻawi i 1010 rewrite cycles - hoʻokahi haneli tausani mau manawa ʻoi aku ma mua o ka ʻae ʻana o ka uila uila," wahi a Andrei Zenkevich, kekahi o nā nā mea kākau o ka hana, ke poʻo o ka hale hana o nā mea hana a me nā mea hana no nanoelectronics MIPT. No laila, ua hana ʻia kahi ʻanuʻu hou i kahi hoʻomanaʻo hou, ʻoiai he nui nā ʻanuʻu e hana ai.



Source: 3dnews.ru

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