论文标题
BA $ _5 $ CUIR $ _3 $ o $ _ {12} $单晶的随机单元状态
Random singlet state in Ba$_5$CuIr$_3$O$_{12}$ single crystals
论文作者
论文摘要
我们研究了磁绝缘子BA $ _5 $ cuir $ _3 $ o $ $ $ _ {12} $的热力学和高磁场性能,该磁极均未显示为与旋转液体接地状态一致的2 K。虽然磁化率和比热的温度依赖性仅显示出弱的抗铁磁相关性,但我们发现磁化强度不会饱和到59个特斯拉的场,从而导致明显的矛盾。我们证明了悖论可以解决,并且所有实验数据都可以在随机单线状态的框架内始终如一地描述。我们展示了一个通用过程,可以从磁化测量值中得出交换耦合分布$ p(j)$,并使用它表明实验数据与PowerLaw表格$ p(j)\ sim j^{ - α} $,$α\ abter $α\约0.6 $一致。因此,我们揭示了高磁场测量值对于识别量子旋转的液体候选物与不显示长期顺序的无序状态至关重要。
We study the thermodynamic and high-magnetic-field properties of the magnetic insulator Ba$_5$CuIr$_3$O$_{12}$, which shows no magnetic order down to 2 K consistent with a spin liquid ground state. While the temperature dependence of the magnetic susceptibility and the specific heat shows only weak antiferromagnetic correlations, we find that the magnetization does not saturate up to a field of 59 Tesla, leading to an apparent contradiction. We demonstrate that the paradox can be resolved, and all of the experimental data can be consistently described within the framework of random singlet states. We demonstrate a generic procedure to derive the exchange coupling distribution $P(J)$ from the magnetization measurements and use it to show that the experimental data is consistent with the power-law form $P(J)\sim J^{-α}$ with $α\approx 0.6 $. Thus, we reveal that high-magnetic-field measurements can be essential to discern quantum spin liquid candidates from disorder dominated states that do not exhibit long-range order.