Fully reversible magnetoelectric voltage controlled THz polarization rotation in magnetostrictive spintronic emitters on PMN-PT
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THz polarization control upon generation is a crucially missing functionality. THz spintronic emitters based on the inverse spin Hall effect (ISHE) allow for this by the strict implicit orthogonality between their magnetization state and the emitted polarization. This control was until now only demonstrated using cumbersome external magnetic field biasing to impose a polarization direction. We present here an efficient voltage control of the polarization state of terahertz spintronic emitters. Using a ferromagnetic spin pumping multilayer exhibiting simultaneously strong uniaxial magnetic anisotropy and magnetostriction in a crossed configuration, an emitter is achieved where, in principle, the stable magnetization direction can be fully and reversibly controlled over a 90 degrees angle span only by an electric voltage. To achieve this, an engineered rare-earth based ferromagnetic multilayer is deposited on a piezoelectric ( 1 - x ) [Pb(Mg0.33Nb0.66)O-3] - x [PbTiO3] (PMN-PT) substrate. We demonstrate experimentally a reversible 70 degrees THz polarization rotation by sweeping the substrate voltage over 400 V. This demonstration allows for a fully THz polarization controlled ISHE spintronic terahertz emitter not needing any control of the magnetic bias.
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Applied Physics Letters. 2022, vol. 120, issue 15, art. no. 152404.
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Publikační činnost Katedry materiálového inženýrství a recyklace / Publications of Department of Materials Engineering and Recycling (653)
Články z časopisů s impakt faktorem / Articles from Impact Factor Journals
Publikační činnost IT4Innovations / Publications of IT4Innovations (9600)
Publikační činnost Katedry materiálového inženýrství a recyklace / Publications of Department of Materials Engineering and Recycling (653)
Články z časopisů s impakt faktorem / Articles from Impact Factor Journals