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Directly probing spin dynamics in a molecular magnet with femtosecond time-resolution

机译:用飞秒时间分辨率直接探测分子磁体中的自旋动力学

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摘要

We show that a vanadium–chromium Prussian blue analogue, which is a room-temperature molecule-based magnet, displays a fast magnetic response on a femtosecond timescale that is attributed to the super-exchange interaction between the metal ions. These dynamics are obtained from femtosecond Faraday magneto-optical (MO) measurements, performed at 50 and 300 K. Exciting at the ligand-to-metal charge-transfer (LMCT) band results in the formation of the 2E excited state on the Cr ion via intersystem crossing (ISC) from the 4LMCT state in less than 250 fs. Subsequent vibrational relaxation in the 2E state occurs on a 0.78 ± 0.05 ps timescale at 50 K and 1.1 ± 0.1 ps at 300 K. The MO measurements can detect the formation of the 2E state on the Cr ion from the change in the super-exchange interaction taking place as a result of the corresponding spin flip associated with the formation of the 2E state. These results open up a new avenue to study molecular magnets using a powerful method that is capable of directly probing spin dynamics on a sub-picosecond timescale in thin film environments.
机译:我们显示钒铬普鲁士蓝类似物(一种基于室温分子的磁体)在飞秒时标上显示出快速的磁响应,这归因于金属离子之间的超交换相互作用。这些动力来自飞秒法拉第磁光(MO)测量,分别在50 K和300 K下进行。在配体-金属电荷转移(LMCT)波段激发会导致形成 2 4 LMCT状态通过系统间交叉(ISC)在Cr离子上的> E激发态在小于250 fs的时间内发生。随后,在 2 E状态下的振动弛豫发生在50 K时0.78±0.05 ps时标和300 K下1.1±0.1 ps时标上。MO测量可以检测到 2 2 E状态的形成相关的自旋翻转,超交换相互作用发生变化,从而使Cr离子上的sup> E状态发生变化。这些结果为使用强大的方法研究分子磁体开辟了一条新途径,该方法能够在皮秒级的皮秒级时间内直接探测自旋动力学。

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