paper

Structural Phase Transition in CeMnSi under Pressure and Comparative Structural Properties of MnSi ( = La, Ce, Pr, Nd)

arXiv:2509.07210 · doi:10.7566/JPSJ.95.014601

Abstract

Powder X-ray diffraction experiments under pressure up to 10 GPa were performed on tetragonal CeFeSi-type MnSi ( = La, Ce, Pr, Nd). A structural phase transition was observed in CeMnSi at a critical pressure of 5.7 GPa. In contrast, LaMnSi, PrMnSi, and NdMnSi do not exhibit any structural transitions within the same pressure range. The lattice parameter ratio of CeMnSi decreases rapidly as pressure approaches , whereas the ratios of the other MnSi increase monotonically with pressure. CeMnSi also shows a relatively small bulk modulus: 41.4(4) GPa in the 0--2 GPa range and 32.8(2) GPa in the 4--5 GPa range, suggesting valence instability under pressure. The structural transition in CeMnSi is attributed to the pressure-induced decrease in and its low bulk modulus. Above , the X-ray diffraction pattern indicates a transition to a monoclinic structure with space group No. 11, . These findings highlight the unique pressure response of CeMnSi and provide insight into the coupling between lattice and electronic degrees of freedom in Ce-based intermetallic systems.