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Effects of uniaxial pressure on the quantum tunneling of magnetization in a high-symmetry Mn_(12) single-molecule magnet

机译:单轴压力对高对称Mn_(12)单分子磁体中磁化量子隧穿的影响

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摘要

The symmetry of single-molecule magnets dictates their spin quantum dynamics, influencing how such systems relax via quantum tunneling of magnetization (QTM). By reducing a system's symmetry, through the application of a magnetic field or uniaxial pressure, these dynamics can be modified. We report measurements of the magnetization dynamics of a crystalline sample of the high-symmetry [Mn_(12)O_(12)(O_2CMe)_(16)(MeOH)_4] • MeOH single-molecule magnet as a function of uniaxial pressure applied either parallel or perpendicular to the sample's "easy" magnetization axis. At temperatures between 1.8 and 3.3 K, magnetic hysteresis loops exhibit the characteristic steplike features that signal the occurrence of QTM. After applying uniaxial pressure to the sample in situ, both the magnitude and field position of the QTM steps changed. The step magnitudes were observed to grow as a function of pressure in both arrangements of pressure, while pressure applied along (perpendicular to) the sample's easy axis caused the resonant-tunneling fields to increase (decrease). These observations were compared with simulations in which the system's Hamiltonian parameters were changed. From these comparisons, we determined that parallel pressure induces changes to the second-order axial anisotropy parameter as well as either the fourth-order axial or fourth-order transverse parameter, or to both. In addition, we find that pressure applied perpendicular to the easy axis induces a rhombic anisotropy E ≈ D/2000 per kbar that can be understood as deriving from a symmetry-breaking distortion of the molecule.
机译:单分子磁体的对称性决定了它们的自旋量子动力学,从而影响此类系统如何通过磁化量子隧道(QTM)松弛。通过降低系统的对称性,通过施加磁场或单轴压力,可以修改这些动力学。我们报告了高对称性[Mn_(12)O_(12)(O_2CMe)_(16)(MeOH)_4]晶体样品的磁化动力学的测量结果•MeOH单分子磁体作为施加单轴压力的函数平行或垂直于样品的“易”磁化轴。在1.8和3.3 K之间的温度下,磁滞回线表现出特征性的阶梯状特征,这些信号表示QTM的出现。在原位向样品施加单轴压力后,QTM阶跃的大小和场位置都发生了变化。观察到,在两种压力布置中,步幅随压力的变化而增长,而沿着(垂直于)样品易轴方向施加的压力则导致共振隧穿场增大(减小)。将这些观察结果与更改了系统汉密尔顿参数的模拟进行了比较。从这些比较中,我们确定平行压力引起第二阶轴向各向异性参数以及第四阶轴向或第四阶横向参数或两者的变化。此外,我们发现垂直于易轴施加的压力会引起菱形各向异性E≈D / 2000 / kbar,这可以理解为源自分子的破坏对称性的扭曲。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics》 |2017年第18期|184403.1-184403.11|共11页
  • 作者单位

    Department of Physics, University of Central Florida, Orlando, Florida 32816, USA;

    Department of Chemistry, University of Florida, Gainesville, Florida 32611, USA;

    National High Magnetic Field Laboratory and Department of Physics, Florida State University, Tallahassee, Florida 32310, USA;

    Department of Condensed Matter Physics, Weizmann Institute of Science, Rehovot 7610001, Israel;

    Department of Condensed Matter Physics, Weizmann Institute of Science, Rehovot 7610001, Israel;

    Department of Physics, University of Central Florida, Orlando, Florida 32816, USA;

    National High Magnetic Field Laboratory and Department of Physics, Florida State University, Tallahassee, Florida 32310, USA;

    Department of Chemistry, University of Florida, Gainesville, Florida 32611, USA;

    Department of Physics and Astronomy, Amherst College, Amherst, Massachusetts 01002, USA;

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