Bolotina Nadezhda, Khrykina Olga, Azarevich Andrey, Gavrilkin Sergey, Sluchanko Nikolay
Shubnikov Institute of Crystallography, Federal Scientific Research Centre `Crystallography and Photonics' of Russian Academy of Sciences, 59 Leninsky prospekt, Moscow, 119333, Russian Federation.
Prokhorov General Physics Institute of the Russian Academy of Sciences, 38 Vavilov str., Moscow, 119991, Russian Federation.
Acta Crystallogr B Struct Sci Cryst Eng Mater. 2020 Dec 1;76(Pt 6):1117-1127. doi: 10.1107/S2052520620013566. Epub 2020 Nov 19.
The crystal structure of single-crystal Kondo insulator YbB was studied at nine temperatures in the range 85-293 K based on X-ray diffraction data. Very weak Jahn-Teller distortions of the cubic lattice were detected at all temperatures, but did not require a revision of the structural model. Heat capacity and electrical conductivity of YbB single crystals were studied in the temperature range 1.9-300 K. It is found that both the structural parameters and the indicated physical properties have some specific features in the temperature range 120-160 K. The unit cell of YbB contracts when cooled below 160 K and expands at around 120 K. The temperature dependences of the equivalent atomic displacement parameters U(T) are no longer monotonic around 140 K and should be modeled by two Einstein curves for Yb and two Debye curves for boron atoms above and below this temperature. As follows from the temperature behavior of the specific heat, coupled oscillations of Yb ions in a double-well potential lead to the appearance of a charge gap in the density of states and gradual deterioration in conductive properties of the crystal below 150 K. This metal-insulator phase transition is accompanied by a kink in the U(T) curves and changes in the unit-cell values.
基于X射线衍射数据,在85 - 293 K范围内的九个温度下研究了单晶近藤绝缘体YbB的晶体结构。在所有温度下均检测到立方晶格非常微弱的 Jahn-Teller 畸变,但不需要对结构模型进行修正。在1.9 - 300 K温度范围内研究了YbB单晶的热容量和电导率。发现在120 - 160 K温度范围内,结构参数和上述物理性质都有一些特定特征。YbB的晶胞在冷却至160 K以下时收缩,在120 K左右膨胀。等效原子位移参数U(T)的温度依赖性在140 K左右不再单调,对于该温度以上和以下的Yb原子应由两条爱因斯坦曲线建模,对于硼原子应由两条德拜曲线建模。从比热的温度行为可以看出,Yb离子在双阱势中的耦合振荡导致态密度中出现电荷能隙,并且在150 K以下晶体的导电性能逐渐变差。这种金属 - 绝缘体相变伴随着U(T)曲线中的扭结和晶胞值的变化。