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<dublin_core schema="dc">
<dcvalue element="contributor" qualifier="author">Mishra,&#x20;Abhisek</dcvalue>
<dcvalue element="contributor" qualifier="author">Das,&#x20;Pritam</dcvalue>
<dcvalue element="contributor" qualifier="author">Chhatoi,&#x20;Rupalipriyadarsini</dcvalue>
<dcvalue element="contributor" qualifier="author">Dash,&#x20;Soubhagya</dcvalue>
<dcvalue element="contributor" qualifier="author">Sahoo,&#x20;Shubhransu</dcvalue>
<dcvalue element="contributor" qualifier="author">Rathore,&#x20;Kshitij&#x20;Singh</dcvalue>
<dcvalue element="contributor" qualifier="author">Cha,&#x20;Pil-Ryung</dcvalue>
<dcvalue element="contributor" qualifier="author">Lee,&#x20;Seung-Cheol</dcvalue>
<dcvalue element="contributor" qualifier="author">Bhattacharjee,&#x20;Satadeep</dcvalue>
<dcvalue element="contributor" qualifier="author">Bedanta,&#x20;Subhankar</dcvalue>
<dcvalue element="date" qualifier="accessioned">2026-01-15T08:30:21Z</dcvalue>
<dcvalue element="date" qualifier="available">2026-01-15T08:30:21Z</dcvalue>
<dcvalue element="date" qualifier="created">2026-01-12</dcvalue>
<dcvalue element="date" qualifier="issued">2025-12</dcvalue>
<dcvalue element="identifier" qualifier="uri">https:&#x2F;&#x2F;pubs.kist.re.kr&#x2F;handle&#x2F;201004&#x2F;154016</dcvalue>
<dcvalue element="description" qualifier="abstract">Transition-metal&#x20;dichalcogenides&#x20;(TMDs)&#x20;are&#x20;a&#x20;novel&#x20;class&#x20;of&#x20;quantum&#x20;materials&#x20;with&#x20;significant&#x20;potential&#x20;in&#x20;spintronics,&#x20;optoelectronics,&#x20;valleytronics,&#x20;and&#x20;optovalleytronics.&#x20;TMDs&#x20;exhibit&#x20;strong&#x20;spin-orbit&#x20;coupling,&#x20;enabling&#x20;efficient&#x20;spin-charge&#x20;interconversion,&#x20;which&#x20;makes&#x20;them&#x20;ideal&#x20;candidates&#x20;for&#x20;spin-orbit&#x20;torque-driven&#x20;spintronic&#x20;devices.&#x20;In&#x20;this&#x20;study,&#x20;we&#x20;have&#x20;investigated&#x20;the&#x20;spin-to-charge&#x20;conversion&#x20;through&#x20;ferromagnetic&#x20;resonance&#x20;in&#x20;Mo⁢S2&#x2F;Cu&#x2F;Co-Fe-B&#x20;heterostructures&#x20;with&#x20;varying&#x20;Cu&#x20;spacer&#x20;thicknesses.&#x20;The&#x20;conversion&#x20;efficiency,&#x20;quantified&#x20;by&#x20;the&#x20;spin&#x20;Hall&#x20;angle,&#x20;has&#x20;been&#x20;enhanced&#x20;by&#x20;an&#x20;order&#x20;of&#x20;magnitude&#x20;due&#x20;to&#x20;Cu&#x20;intercalation.&#x20;Magneto-optic&#x20;Kerr&#x20;effect&#x20;microscopy&#x20;has&#x20;confirmed&#x20;that&#x20;Cu&#x20;does&#x20;not&#x20;significantly&#x20;modify&#x20;the&#x20;magnetic&#x20;domains,&#x20;indicating&#x20;its&#x20;effectiveness&#x20;in&#x20;decoupling&#x20;Mo⁢S2&#x20;from&#x20;Co-Fe-B.&#x20;This&#x20;decoupling&#x20;preserves&#x20;the&#x20;spin-orbit&#x20;coupling&#x20;(SOC)&#x20;of&#x20;Mo⁢S2&#x20;by&#x20;mitigating&#x20;the&#x20;exchange&#x20;interaction&#x20;with&#x20;Co-Fe-B,&#x20;as&#x20;proximity&#x20;to&#x20;localized&#x20;magnetization&#x20;can&#x20;alter&#x20;the&#x20;electronic&#x20;structure&#x20;and&#x20;the&#x20;SOC.&#x20;First-principles&#x20;calculations&#x20;have&#x20;revealed&#x20;that&#x20;Cu&#x20;intercalation&#x20;notably&#x20;enhances&#x20;the&#x20;spin&#x20;Berry&#x20;curvature&#x20;and&#x20;spin&#x20;Hall&#x20;conductivity,&#x20;contributing&#x20;to&#x20;the&#x20;increased&#x20;spin&#x20;Hall&#x20;angle.&#x20;This&#x20;study&#x20;demonstrates&#x20;that&#x20;interface&#x20;engineering&#x20;of&#x20;ferromagnet–TMD-based&#x20;heterostructures&#x20;can&#x20;achieve&#x20;higher&#x20;spin-to-charge&#x20;conversion&#x20;efficiencies,&#x20;paving&#x20;the&#x20;way&#x20;for&#x20;advancements&#x20;in&#x20;spintronic&#x20;applications.</dcvalue>
<dcvalue element="language" qualifier="none">English</dcvalue>
<dcvalue element="publisher" qualifier="none">American&#x20;Physical&#x20;Society</dcvalue>
<dcvalue element="title" qualifier="none">Enhancement&#x20;of&#x20;spin&#x20;Hall&#x20;angle&#x20;by&#x20;an&#x20;order&#x20;of&#x20;magnitude&#x20;via&#x20;Cu&#x20;intercalation&#x20;in&#x20;MoS2&#x2F;Co-Fe-B&#x20;heterostructures</dcvalue>
<dcvalue element="type" qualifier="none">Article</dcvalue>
<dcvalue element="identifier" qualifier="doi">10.1103&#x2F;7bgf-8c2c</dcvalue>
<dcvalue element="description" qualifier="journalClass">1</dcvalue>
<dcvalue element="identifier" qualifier="bibliographicCitation">Physical&#x20;Review&#x20;Applied,&#x20;v.24,&#x20;no.6</dcvalue>
<dcvalue element="citation" qualifier="title">Physical&#x20;Review&#x20;Applied</dcvalue>
<dcvalue element="citation" qualifier="volume">24</dcvalue>
<dcvalue element="citation" qualifier="number">6</dcvalue>
<dcvalue element="description" qualifier="isOpenAccess">N</dcvalue>
<dcvalue element="description" qualifier="journalRegisteredClass">scie</dcvalue>
<dcvalue element="description" qualifier="journalRegisteredClass">scopus</dcvalue>
<dcvalue element="identifier" qualifier="wosid">001646347500002</dcvalue>
<dcvalue element="identifier" qualifier="scopusid">2-s2.0-105024067537</dcvalue>
<dcvalue element="relation" qualifier="journalWebOfScienceCategory">Physics,&#x20;Applied</dcvalue>
<dcvalue element="relation" qualifier="journalResearchArea">Physics</dcvalue>
<dcvalue element="type" qualifier="docType">Article</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">METALS</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">ENERGY</dcvalue>
</dublin_core>
