Quantum phase transition from a spin-liquid state to a spin-glass state in the quasi-one-dimensional spin-1 system Sr1-xCaxNi2V2O8 | |
Article | |
关键词: HALDANE-GAP; MAGNETIC-PROPERTIES; ANTIFERROMAGNET CSNICL3; CRITICAL-POINT; SIGMA-MODEL; DYNAMICS; FIELD; ORDER; CHAIN; EXCITATIONS; | |
DOI : 10.1103/PhysRevB.86.024408 | |
来源: SCIE |
【 摘 要 】
We report a quantum phase transition from a spin-liquid state to a spin-glass state in the quasi-one-dimensional (1D) spin-1 system Sr1-xCaxNi2V2O8, induced by a small amount of Ca substitution at the Sr site. The ground state of the parent compound (x = 0) is found to be a spin-liquid type with a finite energy gap of 26.6 K between the singlet ground state and the triplet excited state. Both dc-magnetization and ac-susceptibility studies on the highest Ca-substituted compound (x = 0.05) indicate a spin-glass-type magnetic ground state. With increasing Ca concentration, the spin-glass ordering temperature increases from 4.5 K (for the x = 0.015 compound) to 6.25 K (for the x = 0.05 compound). The observed results are discussed in the light of earlier experimental reports and theoretical predictions for a quasi-1D spin-1 system.
【 授权许可】
Free