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Magnetic excitation by tunneling electrons of frustrated ferromagnetic spin-1/2 chains and rings

机译:通过隧穿受挫铁磁自旋1/2链和环的电子隧穿进行磁激发

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摘要

Excitation of finite size chains of magnetic spin-1/2 atoms adsorbed on a surface by tunneling electrons from a scanning tunneling microscope is studied theoretically in the case of a frustrated ferromagnetic structure of the chain. The magnetic excitation processes are described using the strong coupling approach from Lorente and Gauyacq [Phys. Rev. Lett.10.1103/PhysRevLett.103. 176601 103, 256802 (2009)]. Varying the exchange-coupling parameters, the chain length and the strength of an applied magnetic field generates a broad variety of magnetic structures in the chain. The links between these various structures and the excitation processes by tunneling electrons are presented, together with a discussion on how the magnetic structure of a chain could be inferred from an inelastic electron tunneling experiment. Extrapolation of the finite size calculations to infinite chains leads to a discussion of the characteristics of the spin waves that can be excited by tunneling electrons in these frustrated magnetic systems. © 2011 American Physical Society.
机译:理论上研究了在受阻的铁磁结构受阻的情况下,通过扫描隧道显微镜中的电子隧穿电子来吸附吸附在表面上的自旋1/2原子的有限尺寸链的过程。磁激励过程是使用Lorente和Gauyacq [Phys。 Revt.10.1103 / PhysRevLett.103。 176601 103,256802(2009)]。改变交换耦合参数,链长和所施加磁场的强度会在链中产生各种各样的磁结构。介绍了这些不同结构与通过隧穿电子激发过程之间的联系,并讨论了如何从非弹性电子隧穿实验中推断出链的磁性结构。将有限大小的计算外推到无限链导致对自旋波的特性的讨论,这些自旋波的特性可以通过在这些受挫的磁系统中隧穿电子来激发。 ©2011美国物理学会。

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