Matches in SemOpenAlex for { <https://semopenalex.org/work/W3138018748> ?p ?o ?g. }
- W3138018748 endingPage "15957" @default.
- W3138018748 startingPage "15950" @default.
- W3138018748 abstract "Spin-orbit torques (SOTs) from transition metal dichalcogenide systems (TMDs) in conjunction with ferromagnetic materials are recently found to be attractive in spintronics for their versatile features. However, most of the previously studied crystalline TMDs are prepared by mechanical exfoliation, which limits their potentials for industrial applications. Here, we show that amorphous WTe2 heterostructures deposited by magnetron sputtering possess a sizable damping-like SOT efficiency of ξDLWTe2 ≈ 0.20 and low damping constant of α = 0.009 ± 0.001. Only an extremely low critical switching current density of Jc≈ 7.05 × 109 A/m2 is required to achieve SOT-driven magnetization switching. The SOT efficiency is further proved to depend on the W and Te relative compositions in the co-sputtered W100–xTex samples, from which a sign change of ξDLWTe2 is observed. In addition, the electronic transport in amorphous WTe2 is found to be semiconducting and is governed by a hopping mechanism. With the above advantages and rich tunability, amorphous and semiconducting WTe2 serves as a unique SOT source for future spintronics applications." @default.
- W3138018748 created "2021-03-29" @default.
- W3138018748 creator A5002238930 @default.
- W3138018748 creator A5030490799 @default.
- W3138018748 creator A5062720793 @default.
- W3138018748 creator A5074901345 @default.
- W3138018748 date "2021-03-26" @default.
- W3138018748 modified "2023-10-10" @default.
- W3138018748 title "Efficient Spin-Orbit Torque Generation in Semiconducting WTe<sub>2</sub> with Hopping Transport" @default.
- W3138018748 cites W110775747 @default.
- W3138018748 cites W1491143454 @default.
- W3138018748 cites W1505400302 @default.
- W3138018748 cites W1965304117 @default.
- W3138018748 cites W1986457392 @default.
- W3138018748 cites W1995123938 @default.
- W3138018748 cites W2011622757 @default.
- W3138018748 cites W2014744284 @default.
- W3138018748 cites W2021440600 @default.
- W3138018748 cites W2022657383 @default.
- W3138018748 cites W2040282906 @default.
- W3138018748 cites W2090027443 @default.
- W3138018748 cites W2096445739 @default.
- W3138018748 cites W2101474368 @default.
- W3138018748 cites W2160796815 @default.
- W3138018748 cites W2162612236 @default.
- W3138018748 cites W2171394417 @default.
- W3138018748 cites W2254676946 @default.
- W3138018748 cites W2262031629 @default.
- W3138018748 cites W2335301680 @default.
- W3138018748 cites W2344160787 @default.
- W3138018748 cites W2371013521 @default.
- W3138018748 cites W2413194114 @default.
- W3138018748 cites W2553782091 @default.
- W3138018748 cites W2608419763 @default.
- W3138018748 cites W2734510965 @default.
- W3138018748 cites W2742177062 @default.
- W3138018748 cites W2753843964 @default.
- W3138018748 cites W2782506589 @default.
- W3138018748 cites W2782797854 @default.
- W3138018748 cites W2883676000 @default.
- W3138018748 cites W2886964554 @default.
- W3138018748 cites W2892962592 @default.
- W3138018748 cites W2905258668 @default.
- W3138018748 cites W2949020224 @default.
- W3138018748 cites W2962963738 @default.
- W3138018748 cites W2966242197 @default.
- W3138018748 cites W2969629906 @default.
- W3138018748 cites W2972872490 @default.
- W3138018748 cites W3001290046 @default.
- W3138018748 cites W3011747244 @default.
- W3138018748 cites W3011898136 @default.
- W3138018748 cites W3014493017 @default.
- W3138018748 cites W3022971014 @default.
- W3138018748 cites W3033939072 @default.
- W3138018748 cites W3039108732 @default.
- W3138018748 cites W3048223601 @default.
- W3138018748 cites W3098175762 @default.
- W3138018748 cites W3098767081 @default.
- W3138018748 cites W3100254053 @default.
- W3138018748 cites W3101234092 @default.
- W3138018748 cites W3104307848 @default.
- W3138018748 cites W3105284836 @default.
- W3138018748 cites W3117026210 @default.
- W3138018748 doi "https://doi.org/10.1021/acsami.1c03530" @default.
- W3138018748 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/33769782" @default.
- W3138018748 hasPublicationYear "2021" @default.
- W3138018748 type Work @default.
- W3138018748 sameAs 3138018748 @default.
- W3138018748 citedByCount "11" @default.
- W3138018748 countsByYear W31380187482021 @default.
- W3138018748 countsByYear W31380187482022 @default.
- W3138018748 countsByYear W31380187482023 @default.
- W3138018748 crossrefType "journal-article" @default.
- W3138018748 hasAuthorship W3138018748A5002238930 @default.
- W3138018748 hasAuthorship W3138018748A5030490799 @default.
- W3138018748 hasAuthorship W3138018748A5062720793 @default.
- W3138018748 hasAuthorship W3138018748A5074901345 @default.
- W3138018748 hasBestOaLocation W31380187482 @default.
- W3138018748 hasConcept C115260700 @default.
- W3138018748 hasConcept C121332964 @default.
- W3138018748 hasConcept C171250308 @default.
- W3138018748 hasConcept C178790620 @default.
- W3138018748 hasConcept C185592680 @default.
- W3138018748 hasConcept C19067145 @default.
- W3138018748 hasConcept C192562407 @default.
- W3138018748 hasConcept C207999682 @default.
- W3138018748 hasConcept C22423302 @default.
- W3138018748 hasConcept C26873012 @default.
- W3138018748 hasConcept C32546565 @default.
- W3138018748 hasConcept C49040817 @default.
- W3138018748 hasConcept C56052488 @default.
- W3138018748 hasConcept C61427134 @default.
- W3138018748 hasConcept C62520636 @default.
- W3138018748 hasConcept C79794668 @default.
- W3138018748 hasConcept C82217956 @default.
- W3138018748 hasConceptScore W3138018748C115260700 @default.
- W3138018748 hasConceptScore W3138018748C121332964 @default.
- W3138018748 hasConceptScore W3138018748C171250308 @default.