Valence Instability of YbCuSi through its quantum critical point
arXiv:1203.3567 · doi:10.1103/PhysRevB.86.125104
Abstract
We report Resonant inelastic x-ray scattering measurements (RIXS) in YbCuSi at the Yb L edge under high pressure (up to 22 GPa) and at low temperatures (down to 7 K) with emphasis on the vicinity of the transition to a magnetic ordered state. We find a continuous valence change towards the trivalent state with increasing pressure but with a pronounced change of slope close to the critical pressure. Even at 22 GPa the Yb state is not fully achieved. The pressure where this feature is observed decreases as the temperature is reduced to 9 GPa at 7K, a value close to the critical pressure (\itshape{p\normalfont{}}\normalfont 7.5 GPa) where magnetic order occurs. The decrease in the valence with decreasing temperature previously reported at ambient pressure is confirmed and is found to be enhanced at higher pressures. We also compare the f electron occupancy between YbCuSi and its Ce-counterpart, CeCuSi.
References in corpus (4)
Cited by in corpus (9)
- Pressure-Induced Valence Crossover and Novel Metamagnetic Behavior near the Antiferromagnetic Quantum Phase Transition of YbNiGa
- Crossover from a heavy fermion to intermediate valence state in noncentrosymmetric Yb2Ni12(P,As)7
- Pressure-induced ferromagnetism with strong Ising-type anisotropy in YbCuSi
- Novel Kondo-like behavior near magnetic instability in SmB : temperature and pressure dependences of Sm valence
- Intermediate valence in single crystalline YbSiAl
- Theory of Charge Order and Heavy-Electron Formation in the Mixed-Valence Compound KNiSe
- Ultrafast Stiffening of the Lattice Potential and Metastable State Formation in 1-TiSe
- Pressure dependence of Ce valence in CeRhIn5
- Anomalous pressure dependence of the bulk modulus and Yb valence in cubic YbPd