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  • Infrared hyperbolic metasur... Infrared hyperbolic metasurface based on nanostructured van der Waals materials
    Li, Peining; Dolado, Irene; Alfaro-Mozaz, Francisco Javier ... Science, 02/2018, Volume: 359, Issue: 6378
    Journal Article
    Peer reviewed
    Open access

    Metasurfaces with strongly anisotropic optical properties can support deep subwavelength-scale confined electromagnetic waves (polaritons), which promise opportunities for controlling light in ...
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  • Room-Temperature Spin Hall ... Room-Temperature Spin Hall Effect in Graphene/MoS2 van der Waals Heterostructures
    Safeer, C. K; Ingla-Aynés, Josep; Herling, Franz ... Nano letters, 02/2019, Volume: 19, Issue: 2
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    Peer reviewed
    Open access

    Graphene is an excellent material for long-distance spin transport but allows little spin manipulation. Transition-metal dichalcogenides imprint their strong spin–orbit coupling into graphene via the ...
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  • The Magnetic Genome of Two-... The Magnetic Genome of Two-Dimensional van der Waals Materials
    Wang, Qing Hua; Bedoya-Pinto, Amilcar; Blei, Mark ... ACS nano, 04/2022, Volume: 16, Issue: 5
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    Open access

    Magnetism in two-dimensional (2D) van der Waals (vdW) materials has recently emerged as one of the most promising areas in condensed matter research, with many exciting emerging properties and ...
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  • Large Multidirectional Spin... Large Multidirectional Spin-to-Charge Conversion in Low-Symmetry Semimetal MoTe2 at Room Temperature
    Safeer, C. K; Ontoso, Nerea; Ingla-Aynés, Josep ... Nano letters, 12/2019, Volume: 19, Issue: 12
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    Peer reviewed

    Efficient and versatile spin-to-charge current conversion is crucial for the development of spintronic applications, which strongly rely on the ability to electrically generate and detect spin ...
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  • A two-dimensional spin fiel... A two-dimensional spin field-effect switch
    Yan, Wenjing; Txoperena, Oihana; Llopis, Roger ... Nature communications, 11/2016, Volume: 7, Issue: 1
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    Future development in spintronic devices will require an advanced control of spin currents, for example by an electric field. Here we demonstrate an approach that differs from previous proposals such ...
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  • Collective near-field coupl... Collective near-field coupling and nonlocal phenomena in infrared-phononic metasurfaces for nano-light canalization
    Li, Peining; Hu, Guangwei; Dolado, Irene ... Nature communications, 07/2020, Volume: 11, Issue: 1
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    Abstract Polaritons – coupled excitations of photons and dipolar matter excitations – can propagate along anisotropic metasurfaces with either hyperbolic or elliptical dispersion. At the transition ...
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  • Microcavity phonon polarito... Microcavity phonon polaritons from the weak to the ultrastrong phonon–photon coupling regime
    Barra-Burillo, María; Muniain, Unai; Catalano, Sara ... Nature communications, 10/2021, Volume: 12, Issue: 1
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    Abstract Strong coupling between molecular vibrations and microcavity modes has been demonstrated to modify physical and chemical properties of the molecular material. Here, we study the less ...
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  • Gate-tuneable and chirality-dependent charge-to-spin conversion in tellurium nanowires
    Calavalle, Francesco; Suárez-Rodríguez, Manuel; Martín-García, Beatriz ... Nature materials, 05/2022, Volume: 21, Issue: 5
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    Chiral materials are an ideal playground for exploring the relation between symmetry, relativistic effects and electronic transport. For instance, chiral organic molecules have been intensively ...
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  • Electrical Control of Valle... Electrical Control of Valley-Zeeman Spin-Orbit-Coupling–Induced Spin Precession at Room Temperature
    Ingla-Aynés, Josep; Herling, Franz; Fabian, Jaroslav ... Physical review letters, 07/2021, Volume: 127, Issue: 4
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    Peer reviewed

    The ultimate goal of spintronics is achieving electrically controlled coherent manipulation of the electron spin at room temperature to enable devices such as spin field-effect transistors. With ...
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