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Ultrafast quantum spin-state switching in the Co-octaethylporphyrin molecular magnet with a terahertz pulsed magnetic field

机译:太赫兹脉冲磁场在Co-八乙基卟啉分子磁体中的超快量子自旋态转换

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摘要

Molecular spin crossover switches are the objects of intense theoretical and experimental studies in recent years. This interest is due to the fact that these systems allow one to control their spin state by applying an external photo-, thermo-, piezo-, or magnetic stimuli. The greatest amount of research is currently devoted to the study of the effect of the photoexcitation on the bi-stable states of spin crossover single molecular magnets (SMMs). The main limitation of photo-induced bi-stable states is their short lifetime. In this paper we present the results of a study of the spin dynamics of the Co-octaethylporphyrin (CoOEP) molecule in the Low Spin (LS) state and the High Spin (HS) state induced by applying the magnetic pulse of $^{36.8T}$. We show that the spin switching in case of the HS state of the CoOEP molecule is characterized by a long lifetime and is dependent on the magnitude and duration of the applied field. Thus, after applying an external stimuli the system in the LS state after the spin switching reverts to its ground state, whereas the system in the HS state remains in the excited state for a long time. We found that the temperature dependency of magnetic susceptibility shows an abrupt thermal spin transition between two spin states at 40 K. Here the proposed theoretical approach opens the way to create modern devices for spintronics with the controllable spin switching process.
机译:分子自旋交叉开关是近年来激烈的理论和实验研究的对象。这种兴趣是由于这些系统允许人们通过施加外部光,热,压电或磁刺激来控制其自旋状态这一事实。目前,大量的研究致力于光激发对自旋交叉单分子磁体(SMM)的双稳态的影响。光诱导双稳态的主要局限性是它们的寿命短。在本文中,我们介绍了通过施加$ ^ {36.8的磁脉冲而引起的,在低自旋(LS)状态和高自旋(HS)状态下共八乙基卟啉(CoOEP)分子自旋动力学的研究结果。 T} $。我们表明,在CoOEP分子处于HS状态的情况下,自旋切换的特征是寿命长,并且取决于施加场的大小和持续时间。因此,在施加外部刺激之后,自旋切换后的处于LS状态的系统恢复到其基态,而处于HS状态的系统则长时间处于激励状态。我们发现,磁化率的温度依赖性显示了在40 K时两个自旋状态之间的突然热自旋跃迁。在此,所提出的理论方法为利用可控的自旋开关过程创建用于自旋电子学的现代设备开辟了道路。

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