Ionic control of magnetism in all-solid-state CoOx/yttria-stabilized zirconia heterostructures
Magneto-ionic gating, a procedure that enables the modulation of materials' magnetic properties by voltage-driven ion motion, offers alternative perspectives for emerging low-power magnetic storage and spintronic applications. Most previous studies in all-solid-state magneto-ionic systems have...
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Published in: | Applied physics letters Vol. 124; no. 20 |
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13-05-2024
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Abstract | Magneto-ionic gating, a procedure that enables the modulation of materials' magnetic properties by voltage-driven ion motion, offers alternative perspectives for emerging low-power magnetic storage and spintronic applications. Most previous studies in all-solid-state magneto-ionic systems have focused on the control of interfacial magnetism of ultrathin (i.e., 1–3 nm) magnetic films, taking advantage of an adjacent ionic conducting oxide, usually GdOx or HfOx, that transports functional ionic species (e.g., H+ or O2−). Here, we report on room-temperature OFF–ON ferromagnetism by solid-state magneto-ionics in relatively thick (25 nm) patterned CoOx films grown on an yttria-stabilized zirconia (YSZ) layer, which acts as a dielectric to hold electric field and as an O2− ion reservoir. Upon negatively biasing, O2− ions from the CoOx tend to migrate toward the YSZ gate electrode, leading to the gradual generation of magnetization (i.e., OFF-to-ON switching of a ferromagnetic state). X-ray absorption and magnetic circular dichroism studies reveal subtle changes in the electronic/chemical characteristics, responsible for the induced magnetoelectric effects in such all-oxide heterostructures. Recovery of the initial (virtually non-magnetic) state is achieved by application of a positive voltage. The study may guide future development of all-solid-state low-power CMOS-compatible magneto-ionic devices. |
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AbstractList | Magneto-ionic gating, a procedure that enables the modulation of materials' magnetic properties by voltage-driven ion motion, offers alternative perspectives for emerging low-power magnetic storage and spintronic applications. Most previous studies in all-solid-state magneto-ionic systems have focused on the control of interfacial magnetism of ultrathin (i.e., 1–3 nm) magnetic films, taking advantage of an adjacent ionic conducting oxide, usually GdOx or HfOx, that transports functional ionic species (e.g., H+ or O2−). Here, we report on room-temperature OFF–ON ferromagnetism by solid-state magneto-ionics in relatively thick (25 nm) patterned CoOx films grown on an yttria-stabilized zirconia (YSZ) layer, which acts as a dielectric to hold electric field and as an O2− ion reservoir. Upon negatively biasing, O2− ions from the CoOx tend to migrate toward the YSZ gate electrode, leading to the gradual generation of magnetization (i.e., OFF-to-ON switching of a ferromagnetic state). X-ray absorption and magnetic circular dichroism studies reveal subtle changes in the electronic/chemical characteristics, responsible for the induced magnetoelectric effects in such all-oxide heterostructures. Recovery of the initial (virtually non-magnetic) state is achieved by application of a positive voltage. The study may guide future development of all-solid-state low-power CMOS-compatible magneto-ionic devices. |
Author | Ma, Zheng Sort, Jordi Fina, Ignasi Tan, Zhengwei Quintana, Alberto Sánchez, Florencio Menéndez, Enric Herrero-Martín, Javier Spasojevic, Irena López-Pintó, Nicolau |
Author_xml | – sequence: 1 givenname: Zheng surname: Ma fullname: Ma, Zheng organization: Departament de Física, Universitat Autònoma de Barcelona – sequence: 2 givenname: Zhengwei surname: Tan fullname: Tan, Zhengwei organization: Departament de Física, Universitat Autònoma de Barcelona – sequence: 3 givenname: Alberto surname: Quintana fullname: Quintana, Alberto organization: Institut de Ciència de Materials de Barcelona, ICMAB-CSIC – sequence: 4 givenname: Irena surname: Spasojevic fullname: Spasojevic, Irena organization: Departament de Física, Universitat Autònoma de Barcelona – sequence: 5 givenname: Nicolau surname: López-Pintó fullname: López-Pintó, Nicolau organization: Departament de Física, Universitat Autònoma de Barcelona – sequence: 6 givenname: Florencio surname: Sánchez fullname: Sánchez, Florencio organization: Institut de Ciència de Materials de Barcelona, ICMAB-CSIC – sequence: 7 givenname: Ignasi surname: Fina fullname: Fina, Ignasi organization: Institut de Ciència de Materials de Barcelona, ICMAB-CSIC – sequence: 8 givenname: Javier surname: Herrero-Martín fullname: Herrero-Martín, Javier organization: ALBA Synchrotron Light Facility – sequence: 9 givenname: Enric surname: Menéndez fullname: Menéndez, Enric organization: Departament de Física, Universitat Autònoma de Barcelona – sequence: 10 givenname: Jordi surname: Sort fullname: Sort, Jordi organization: 4Institució Catalana de Recerca i Estudis Avançats (ICREA), Pg. Lluís Companys 23, Barcelona 08010, Spain |
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Snippet | Magneto-ionic gating, a procedure that enables the modulation of materials' magnetic properties by voltage-driven ion motion, offers alternative perspectives... |
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SubjectTerms | Cobalt oxides Dichroism Electric fields Electric potential Electrons Ferromagnetism Heterostructures Ion motion Magnetic films Magnetic properties Magnetic storage Magnetism Power management Room temperature Solid state Voltage X ray absorption Yttria-stabilized zirconia Yttrium oxide |
Title | Ionic control of magnetism in all-solid-state CoOx/yttria-stabilized zirconia heterostructures |
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