Jungwirth, T., Marti, X., Wadley, P. & Wunderlich, J. Antiferromagnetic spintronics. Nat. Nanotechnol. 11, 231–241 (2016).
Baltz, V. et al. Antiferromagnetic spintronics. Rev. Mod. Phys. 90, 015005 (2018).
Kimel, A., Kirilyuk, A., Tsvetkov, A., Pisarev, R. & Rasing, T. Laser-induced ultrafast spin reorientation within the antiferromagnet TmFeO3. Nature 429, 850–853 (2004).
Baierl, S. et al. Nonlinear spin management by terahertz-driven anisotropy fields. Nat. Photon. 10, 715–718 (2016).
Kampfrath, T. et al. Coherent terahertz management of antiferromagnetic spin waves. Nat. Photon. 5, 31–34 (2011).
Kimel, A. et al. Ultrafast non-thermal management of magnetization by instantaneous photomagnetic pulses. Nature 435, 655–657 (2005).
Manchon, A. et al. Present-induced spin–orbit torques in ferromagnetic and antiferromagnetic programs. Rev. Mod. Phys. 91, 035004 (2019).
Kang, Okay., Lee, W.-B., Lee, D.-Okay., Lee, Okay.-J. & Choi, G.-M. Magnetization dynamics of antiferromagnetic metals of PtMn and IrMn pushed by a pulsed spin-transfer torque. Appl. Phys. Lett. 118, 252407 (2021).
Miwa, S. et al. Big efficient damping of octupole oscillation in an antiferromagnetic Weyl semimetal. Small Sci. 1, 2000062 (2021).
Krén, E., Paitz, J., Zimmer, G. & Zsoldos, É. Research of the magnetic section transformation within the Mn3Sn section. Physica B+C 80, 226–230 (1975).
Tomiyoshi, S. & Yamaguchi, Y. Magnetic construction and weak ferromagnetism of Mn3Sn studied by polarized neutron diffraction. J. Phys. Soc. Jpn 51, 2478–2486 (1982).
Brown, P., Nunez, V., Tasset, F., Forsyth, J. & Radhakrishna, P. Dedication of the magnetic construction of Mn3Sn utilizing generalized neutron polarization evaluation. J. Phys. Condens. Matter 2, 9409 (1990).
Kübler, J. & Felser, C. Non-collinear antiferromagnets and the anomalous Corridor impact. Europhys. Lett. 108, 67001 (2014).
Yang, H. et al. Topological Weyl semimetals within the chiral antiferromagnetic supplies Mn3Ge and Mn3Sn. New J. Phys. 19, 015008 (2017).
Nakatsuji, S., Kiyohara, N. & Higo, T. Giant anomalous Corridor impact in a non-collinear antiferromagnet at room temperature. Nature 527, 212–215 (2015).
Ikhlas, M. et al. Giant anomalous Nernst impact at room temperature in a chiral antiferromagnet. Nat. Phys. 13, 1085–1090 (2017).
Kimata, M. et al. Magnetic and magnetic inverse spin Corridor results in a non-collinear antiferromagnet. Nature 565, 627–630 (2019).
Hu, S. et al. Environment friendly perpendicular magnetization switching by a magnetic spin Corridor impact in a noncollinear antiferromagnet. Nat. Commun. 13, 4447 (2022).
Higo, T. et al. Giant magneto-optical Kerr impact and imaging of magnetic octupole domains in an antiferromagnetic metallic. Nat. Photon. 12, 73–78 (2018).
Tsai, H. et al. Electrical manipulation of a topological antiferromagnetic state. Nature 580, 608–613 (2020).
Higo, T. et al. Perpendicular full switching of chiral antiferromagnetic order by present. Nature 607, 474–479 (2022).
Takeuchi, Y. et al. Chiral-spin rotation of non-collinear antiferromagnet by spin–orbit torque. Nat. Mater. 20, 1364–1370 (2021).
Yoon, J.-Y. et al. Handedness anomaly in a non-collinear antiferromagnet below spin–orbit torque. Nat. Mater. 22, 1106–1113 (2023).
Krishnaswamy, G. Okay. et al. Time-dependent multistate switching of topological antiferromagnetic order in Mn3Sn. Phys. Rev. Appl. 18, 024064 (2022).
Pal, B. et al. Setting of the magnetic construction of chiral kagome antiferromagnets by a seeded spin–orbit torque. Sci. Adv. 8, eabo5930 (2022).
Zhang, S., Levy, P. & Fert, A. Mechanisms of spin-polarized current-driven magnetization switching. Phys. Rev. Lett. 88, 236601 (2002).
Kovalev, A. A., Bauer, G. E. & Brataas, A. Perpendicular spin valves with ultrathin ferromagnetic layers: magnetoelectronic circuit investigation of finite-size results. Phys. Rev. B 73, 054407 (2006).
Núnez, A. S., Duine, R., Haney, P. & MacDonald, A. Concept of spin torques and big magnetoresistance in antiferromagnetic metals. Phys. Rev. B 73, 214426 (2006).
MacDonald, A. & Tsoi, M. Antiferromagnetic metallic spintronics. Philos. Trans. R. Soc. A 369, 3098–3114 (2011).
Yu, J. et al. Lengthy spin coherence size and bulk-like spin–orbit torque in ferrimagnetic multilayers. Nat. Mater. 18, 29–34 (2019).
Lim, Y. et al. Dephasing of transverse spin present in ferrimagnetic alloys. Phys. Rev. B 103, 024443 (2021).
Stiles, M. D. & Zangwill, A. Anatomy of spin-transfer torque. Phys. Rev. B 66, 014407 (2002).
Choi, G.-M. et al. Optical spin–orbit torque in heavy metal-ferromagnet heterostructures. Nat. Commun. 11, 1482 (2020).
Cheng, Y., Yu, S., Zhu, M., Hwang, J. & Yang, F. Tunable topological Corridor results in noncollinear antiferromagnet Mn3Sn/Pt bilayers. APL Mater. 9, 051121 (2021).
Železný, J., Zhang, Y., Felser, C. & Yan, B. Spin-polarized present in noncollinear antiferromagnets. Phys. Rev. Lett. 119, 187204 (2017).
Yamane, Y., Gomonay, O. & Sinova, J. Dynamics of noncollinear antiferromagnetic textures pushed by spin present injection. Phys. Rev. B 100, 054415 (2019).
Shukla, A. & Rakheja, S. Spin-torque-driven terahertz auto-oscillations in noncollinear coplanar antiferromagnets. Phys. Rev. Appl. 17, 034037 (2022).
Okuno, T. et al. Spin-transfer torques for area wall movement in antiferromagnetically coupled ferrimagnets. Nat. Electron. 2, 389–393 (2019).
Yang, Y. et al. Ultrafast magnetization reversal by picosecond electrical pulses. Sci. Adv. 3, e1603117 (2017).
Jhuria, Okay. et al. Spin–orbit torque switching of a ferromagnet with picosecond electrical puses. Nat. Electron. 3, 680–686 (2020).
Chen, X. et al. Octupole-driven magnetoresistance in an antiferromagnetic tunnel junction. Nature 613, 490–495 (2023).
Qin, P. et al. Room-temperature magnetoresistance in an all-antiferromagnetic tunnel junction. Nature 613, 485–489 (2023).