“…7–9 Currently, spintronics 10–16 aims at employing the spin degree of freedom of small structures as the information carrier. 17–19 Magnetic molecules and heterostructures 20–24 are promising systems for future spintronic devices 25–27 since their discrete energy levels facilitate the manipulation of magnetization states. 28 Moreover, combining molecular spintronics with ultrafast spin dynamics 29–34 can increase storage density and information processing rates.…”
The accomplishment of long-distance spin transfer scenarios between several magnetic centers is a big challenge for building and supporting spin-logic units for developing future all-optical magnetic unit operations. Using high-level...
“…7–9 Currently, spintronics 10–16 aims at employing the spin degree of freedom of small structures as the information carrier. 17–19 Magnetic molecules and heterostructures 20–24 are promising systems for future spintronic devices 25–27 since their discrete energy levels facilitate the manipulation of magnetization states. 28 Moreover, combining molecular spintronics with ultrafast spin dynamics 29–34 can increase storage density and information processing rates.…”
The accomplishment of long-distance spin transfer scenarios between several magnetic centers is a big challenge for building and supporting spin-logic units for developing future all-optical magnetic unit operations. Using high-level...
This study presents the non-layered α-MnSe nanosheets transferred onto LaMnO3 films to obtain a multifunction heterostructure. The outstanding multifunction characteristics are very useful for next-generation devices.
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