论文标题
GD2Zniro6中的分数自旋波动和量子液体特征
Fractional Spin fluctuations and quantum liquid signature in Gd2ZnIrO6
论文作者
论文摘要
迄今为止,量子旋转液相的离散识别,即凝结物理学的圣杯,在实验上仍然是一项具有挑战性的任务。但是,即使在理论上猜想的宽度范围内,量子自旋液态的前体也可能反映在旋转动力学中。在这里,我们报告了基于IR的双钙钛矿GD2ZNIRO6上的全面非弹性(拉曼)散射测量,这是不同入射光子能量和极化在较大温度范围内的函数。我们的结果证明了在降低温度下的低能量下极化独立的准弹性峰出现的顺磁相中的自旋分数。同样,通过动态拉曼敏感性测得的波动散射幅度随着温度而增加,并在进入远程磁有序阶段(低于23 k)时会降低,并降低,这表明这些波动的磁性起源。因此,这种异常的散射响应表明在三维双钙岩系统中表现出量子自旋液相的波动波动。
Hitherto, the discrete identification of quantum spin liquid phase, holy grail of condensed matter physics, remains a challenging task experimentally. However, the precursor of quantum spin liquid state may reflect in the spin dynamics even in the paramagnetic phase over a wide temperature range as conjectured theoretically. Here we report comprehensive inelastic light (Raman) scattering measurements on the Ir based double perovskite, Gd2ZnIrO6, as a function of different incident photon energies and polarization in a broad temperature range. Our results evidenced the spin fractionalization within the paramagnetic phase reflected in the emergence of a polarization independent quasi-elastic peak at low energies with lowering temperature. Also, the fluctuating scattering amplitude measured via dynamic Raman susceptibility increases with lowering temperature and decreases mildly upon entering into long-range magnetic ordering phase, below 23 K, suggesting the magnetic origin of these fluctuations. This anomalous scattering response is thus indicative of fluctuating fractional spin evincing the quantum spin liquid phase in a three-dimensional double perovskite system.