Ultrafast Magnetism I

Ultrafast Magnetism I
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超快磁力 I

DOI:
10.1007/978-3-319-07743-7
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发表时间:
2015
影响因子:
1.2
通讯作者:
R. Chantrell
R. Chantrell
中科院分区:
物理与天体物理4区
文献类型:
--
作者:
J. Bigot;W. Hübner;T. Rasing;R. Chantrell

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这本关于超快磁性的书是2013年10月28日至11月1日在法国斯特拉斯堡会议中心举行的国际“超快磁化会议”上发表的文章的集合。第一次会议计划每两年举行一次,吸引了来自27个国家飞磁学领域的科学家出席,包括许多与体或纳米结构材料自旋动力学相关的理论和实验研究课题。与会者赞赏这一独特的机会,可以讨论新的想法,并就所报告现象的各种物理解释进行辩论。单次会议的形式,包括许多口头发言以及大量的海报展示时间,使研究人员能够对该领域有一个详细的概述。重要的是,人们可以感觉到,除了研究基本的磁性现象外,超快磁性已经进入了一个应用物理和工程发挥重要作用的阶段。在不久的将来,人们提出了几种具有令人兴奋的研发前景的设备,特别是用于磁记录、时间分辨磁成像和自旋极化输运的设备,从而建立了现代磁学各个方面之间的联系。同时,在过去的几年中,技术和实验配置的多样性蓬勃发展,特别是使用x射线、可见光、红外线和太赫兹辐射。同样明显的是,在纳米尺度上跟踪自旋和磁畴的动力学方面正在做出重要的努力,为令人兴奋的未来发展开辟了道路。值得指出的是,在不同种类的磁性材料上,理论和实验方法在解释角动量和能级的动力学行为方面所作的一致努力。最后,大家一致认识到,科学口头和海报介绍的质量有助于使会议达到非常高的国际标准。
This volume on Ultrafast Magnetism is a collection of articles presented at the international “Ultrafast Magnetization Conference” held at the Congress Center in Strasbourg, France, from October 28th to November 1st, 2013. This first conference, which is intended to be held every two years, received a wonderful attendance and gathered scientists from 27 countries in the field of Femtomagnetism, encompassing many theoretical and experimental research subjects related to the spins dynamics in bulk or nanostructured materials. The participants appreciated this unique opportunity for discussing new ideas and debating on various physical interpretations of the reported phenomena. The format of a single session with many oral contributions as well as extensive time for poster presentations allowed researchers to have a detailed overview of the field. Importantly, one could sense that, in addition to studying fundamental magnetic phenomena, ultrafast magnetism has entered in a phase where applied physics and engineering are playing an important role. Several devices are being proposed with exciting R&D perspectives in the near future, in particular for magnetic recording, time resolved magnetic imaging and spin polarized transport, therefore establishing connections between various aspects of modern magnetism. Simultaneously, the diversity of techniques and experimental configurations has flourished during the past years, employing in particular Xrays, visible, infra-red and terahertz radiations. It was also obvious that an important effort is being made for tracking the dynamics of spins and magnetic domains at the nanometer scale, opening the pathway to exciting future developments. The concerted efforts between theoretical and experimental approaches for explaining the dynamical behaviors of angular momentum and energy levels, on different classes of magnetic materials, are worth pointing out. Finally it was unanimously recognized that the quality of the scientific oral and poster presentations contributed to bring the conference to a very high international standard.