LNSM — Laboratoire Transaction (Q19853): Difference between revisions
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(Created claim: summary (P836): The project aims at developing anti-ferromagnetic (AFM) within the AFM as a new electronics industry based on the spin in the AFM. It is aimed at creating a material basis for the sector and developing relevant theory. An experimental objective is the identification and demonstration of the principles enabling the effective detection and handling of AFM loops and the use of the AFM structures such as non-volatile, magnetic and magnetic fields re...) |
(Removed claim: co-financing rate (P837): 71.3499999976991 percent) |
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Property / co-financing rate: 71.3499999976991 percent / rank | |||||||
Revision as of 15:13, 19 March 2020
Project in Czech Republic financed by DG Regio
Language | Label | Description | Also known as |
---|---|---|---|
English | LNSM — Laboratoire Transaction |
Project in Czech Republic financed by DG Regio |
Statements
31,009,099.57 Czech koruna
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43,460,546.0 Czech koruna
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1 April 2017
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31 March 2021
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Fyzikální ústav AV ČR, v. v. i.
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18200
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Projekt usiluje o rozvinutí antiferomagnetické (AFM) spintroniky jakožto nového oboru elektroniky založeného na spinu v AFM materiálech. Je zaměřen na vytvoření materiálové základny tohoto oboru a na vývoj příslušné teorie. Experimentálním cílem je identifikace a demonstrace principů umožňujících efektivní detekci a manipulaci AFM spinů a využití AFM struktur např. jako nevolatilních ultrarychlých pamětí odolných vůči ionizujícímu záření a magnetickým polím, vhodných pro vysokou integraci. a. (Czech)
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The project aims at developing anti-ferromagnetic (AFM) within the AFM as a new electronics industry based on the spin in the AFM. It is aimed at creating a material basis for the sector and developing relevant theory. An experimental objective is the identification and demonstration of the principles enabling the effective detection and handling of AFM loops and the use of the AFM structures such as non-volatile, magnetic and magnetic fields resistant to ionising radiation and magnetic fields suitable for high integration. a. (English)
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Identifiers
CZ.02.1.01/0.0/0.0/16_013/0001405
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