2017
DOI: 10.1038/s41598-017-13211-8
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Nucleation and annihilation of skyrmions in Mn2CoAl observed through the topological Hall effect

Abstract: Magnetic skyrmions are topologically protected spin textures with great technological potential. These topologically non-trivial non-coplanar spin textures give rise to a topological Hall effect, enabling the purely electronic detection of magnetic skyrmions. We report a clear topological Hall effect in thin films of the the Heusler alloy Mn2CoAl, a ferromagnetic spin-gapless semiconductor, capped by a thin layer of Pd. We exploit the strong thickness- and temperature-dependence of the anomalous Hall effect in… Show more

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Cited by 58 publications
(37 citation statements)
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“…We note that all published transport results comprising similar phenomenology [17][18][19][20][21][22][23][24] could be well explained using our model introducing two coexisting ferromagnetic orders. Moreover our explanation successfully describes every electrical transport feature, including dependence on magnetic field, gate voltage, temperature and thin film parameters such as doping level and film thickness, without the need to speculate about new topological physics.…”
supporting
confidence: 76%
See 1 more Smart Citation
“…We note that all published transport results comprising similar phenomenology [17][18][19][20][21][22][23][24] could be well explained using our model introducing two coexisting ferromagnetic orders. Moreover our explanation successfully describes every electrical transport feature, including dependence on magnetic field, gate voltage, temperature and thin film parameters such as doping level and film thickness, without the need to speculate about new topological physics.…”
supporting
confidence: 76%
“…The anomalous Hall effect (AHE), despite being first reported over a hundred years ago, [1] remains of significant modern research interest as its investigation in novel magnetic materials continues to yield rich physics. Recent examples of this are the quantum anomalous Hall effect [2][3][4][5][6][7][8][9][10][11][12], which offers both potential for metrological applications [13,14] and for the academic study of axion electrodynamics [5,12,15,16], as well as reports on alleged contribution to the Hall effect [17][18][19][20][21][22][23][24] associated with skyrmion magnetic textures.…”
mentioning
confidence: 99%
“…The third category covers magnetization from the hard axis, including Cr5Te8 [19] , Fe3GeTe2 [20] , and (Cr0.9B0.1)Te. Many Mn-based Heusler compounds [21][22][23][24][25]35] have combined materials from all three categories. The topological Hall effects for the second and third categories are larger, with a large magnetic field, depending on the exchange coupling strength or magnetocrystalline anisotropy.…”
mentioning
confidence: 99%
“…For example, the skyrmion phase was recently detected through the THE at low temperature range in Heusler alloys Mn 2 RhSn, [ 126 ] Mn 1.4 (Pt,Pd)Sn, [ 127,128 ] and Mn 2 CoAl. [ 129 ] Moreover, the interfacial Dzyaloshinskii–Moriya interaction (iDMI) was investigated in CFA ultrathin films of various thicknesses and with various buffer layers by measuring spin waves with Brillouin light scattering (BLS). [ 130,131 ] And the current‐induced dipolar magnetic skyrmions in Co‐based Heusler alloy CFA at room temperature have been reported by Husain et al.…”
Section: Magnetic Thermoelectric and Transport Properties Of Co‐basementioning
confidence: 81%
“…For example, the skyrmion phase was recently detected through the THE at low temperature range in Heusler alloys Mn 2 RhSn, [126] Mn 1.4 (Pt,Pd)Sn, [127,128] and Mn 2 CoAl. [129] Moreover, the interfacial Dzyaloshinskii-Moriya interaction (iDMI) was investigated in CFA ultrathin films of various thicknesses and with various buffer layers by measuring spin waves with Brillouin light scattering (BLS). [130,131] And the current-induced dipolar magnetic skyrmions in Co-based Heusler alloy CFA at room temperature have been reported by Husain et al [132] and Akhtar et al [133] Although they did not observe a clear skyrmion Hall effect [134] in this system due to the pinning effects, it is still very promising to explore the efficient skyrmion motion in Heusler alloys where the stabilization of magnetic skyrmions under ambient conditions is possible.…”
Section: Hall (And Related) Effectsmentioning
confidence: 99%