论文标题
在氮化物薄膜中,稳健的量子格里菲斯在1.5开尔文处的奇异性奇异性
Robust Quantum Griffiths Singularity at above 1.5 Kelvin in Nitride Thin Films
论文作者
论文摘要
与淬火障碍密切相关的量子格里菲斯奇异性(QGS)的特征是动态临界指数的差异和激活缩放行为的存在。通常,这种量子现象相当罕见,只有在极低的温度下才观察到。在这里,我们报告了对氮化物薄膜NBN中强大QGS的实验性观察,该膜在相当高的温度范围内生存。电气传输性能在磁场下测量到12 t。在连续变化的过渡点随温度降低的情况下,磁场诱导的超导体金属转变观察到。基于常规幂律缩放的动态临界指数在接近低温极限时揭示了趋势。此外,板电阻的温度和场依赖性可以通过温度区域的激活缩放分析来描述,高达1.6 k $ \ \ leq t \ leq $ 4.0 k。我们认为,QGS在当前系统中的鲁棒性源自磁场和自由度自由度的强大耦合而引起的Pauli Parmagnetic效应。
Quantum Griffiths singularity (QGS), which is closely correlated with the quenched disorder, is characterized by the divergence of the dynamical critical exponent and the presence of activated scaling behavior. Typically such a quantum phenomenon is rather rare and only observed in extremely low temperatures. Here we report the experimental observation of a robust QGS in nitride thin films, NbN, which survives in a rather high temperature range. The electrical transport propertied were measured under the magnetic field up to 12 T. The field induced superconductor-metal transitions were observed with the continuously changed transition points with the decrease of temperature. The dynamical critical exponent based on the conventional power-law scaling reveals a divergent trend when approaching the the low temperature limit. Moreover, the temperature and field dependence of sheet resistance can be described by the activated scaling analysis in the temperature region up to 1.6 K $\leq T \leq$ 4.0 K. We argue that the robustness of QGS in the present system originates from the Pauli paramagnetic effect due to the strong coupling between the magnetic field and the spin degree of freedom.