Data for the article "Laser-Induced Creation of Antiferromagnetic 180-Degree Domains in NiO/Pt Bilayers"
收藏资源简介:
The authors thank T. Reimer and L. Schnitzspan for skillful technical assistance and O. Gomonay for her comments. Experiments were performed at the CIRCE beamline at ALBA Synchrotron with the collaboration of ALBA staff. The authors thank HZB for the allocation of synchrotron radiation beamtime and thankfully acknowledge the financial support by HZB. The authors acknowledge the Paul Scherrer Institute, Villigen, Switzerland for the beamtime allocation under proposal 20211822 at the SIM beamline of the SLS. B.B. and A. R. acknowledge funding from the European Union’s Framework Programme for Research and Innovation Horizon 2020 (2014–2020) under the Marie Skłodowska- Curie Grant Agreement No. 860060 (ITN MagnEFi). M.K. acknowledges support from the Graduate School of Excellence Materials Science in Mainz (MAINZ) DFG 266, the DAAD (Spintronics network, Project No. 57334897 and Insulator Spin-Orbitronics, Project No. 57524834), and all groups from Mainz and Kaiserslautern acknowledge that this work was funded by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation), TRR 173-268565370 (Project Nos. A01, A08, B02 and B03) and KAUST (OSR-2019-CRG8-4048). B.S. further acknowledges funding by the Dynamics and Topology Research Center (TopDyn) funded by the State of Rhineland Palatinate. M.K. acknowledges financial support from the Horizon 2020 Framework Programme of the European Commission under FET-Open Grant Agreement No. 863155 (s-Nebula). This work was also supported by ERATO “Spin Quantum Rectification Project” (Grant No. JPMJER1402) and the Grant-in-Aid for Scientific Research on Innovative Area, “Nano Spin Conversion Science” (Grant No. JP26103005), Grant-in-Aid for Scientific Research (S) (Grant No. JP19H05600) from JSPS KAKENHI, Japan. M.A.N. and M.F. acknowledge Spanish ICNN funding through project ECLIPSE (PID2021- 122980OB-C54). R.R. also acknowledges support from the Grant RYC 2019-026915-I, the Project TED2021-130930B-I00 funded by thee MCIN/ AEI/10.13039/501100011033 and by the ESF investing in your future and the European Union NextGenerationEU/PRTR, the Xunta de Galicia (ED431F 2022/04, ED431B 2021/013, Centro Singular de Investigación de Galicia Accreditation 2019-2022, ED431G 2019/03) and the European Union (European Regional Development Fund - ERDF)
作者感谢T. Reimer与L. Schnitzspan提供的精湛技术协助,以及O. Gomonay提出的宝贵意见。本研究实验于阿尔巴同步辐射光源(ALBA Synchrotron)的CIRCE光束线完成,实验过程得到了该光源工作人员的协作支持。作者感谢亥姆霍兹柏林材料与能源研究中心(HZB)分配的同步辐射光束机时,并衷心感谢该中心提供的经费支持。作者感谢瑞士维利根的保罗·谢尔研究所(Paul Scherrer Institute),该所为实验在瑞士光源(SLS)SIM光束线的20211822号提案分配了光束机时。B.B.与A.R.感谢欧盟2014-2020年研究与创新框架计划“地平线2020”(Horizon 2020)下编号为860060的玛丽·斯克沃多夫斯卡-居里资助协议(ITN MagnEFi项目)提供的经费支持。M.K.感谢美因茨卓越材料科学研究生院(MAINZ DFG 266)以及德国学术交流服务中心(DAAD)旗下自旋电子学网络项目(编号57334897)与绝缘体自旋轨道电子学项目(编号57524834)提供的支持;美因茨与凯泽斯劳滕的所有研究团队均感谢本研究获得的德国研究基金会(DFG, Deutsche Forschungsgemeinschaft)资助,包括编号TRR 173-268565370的项目(子项目编号A01、A08、B02及B03),以及阿卜杜拉国王科技大学(KAUST)资助的OSR-2019-CRG8-4048项目。B.S.进一步感谢由莱茵兰-普法尔茨州资助的动力学与拓扑研究中心(TopDyn)提供的经费支持。M.K.感谢欧盟委员会“地平线2020”框架计划下编号为863155的FET开放资助协议(s-Nebula项目)提供的经费支持。本研究同时获得了日本ERATO“自旋量子整流项目”(资助编号JPMJER1402)、日本学术振兴会(JSPS)科学研究费补助金(KAKENHI)旗下创新领域科学研究资助“纳米自旋转换科学”(编号JP26103005)以及重点领域科学研究资助(S类,编号JP19H05600)的支持。M.A.N.与M.F.感谢西班牙ICNN通过ECLIPSE项目(编号PID2021-122980OB-C54)提供的经费支持。R.R.感谢以下资助与支持:RYC 2019-026915-I号资助;由西班牙科学与创新部(MCIN)/国家研究机构(AEI,编号10.13039/501100011033)、欧洲社会基金(ESF,“投资你的未来”计划)以及欧盟“下一代欧盟”/西班牙恢复转型韧性计划(NextGenerationEU/PRTR)资助的TED2021-130930B-I00项目;加利西亚自治区(资助编号ED431F 2022/04、ED431B 2021/013、加利西亚卓越研究中心认证2019-2022、ED431G 2019/03);以及欧盟欧洲区域发展基金(ERDF)。



