A growing number of quantum material, whose collective quantum mechanical properties give rise to exotic quantum states, have well-defined fractional sets of quasi-particles; for instance, a “spinon”
K2RENb5O15 (RE = rare earths), which form in tetragonal tungsten-bronze structure, display interesting magnetic properties arising from 1D linear spin-chain of RE3+ ions along the c-axis. The magnetic
Abstract: Our recent systematic research on CeCuAl3 and Cu-Al substituted compounds has brought many important results on their physical properties, namely peculiar magnetic excitations. CeCuAl3
We propose to study the crystal field excitations in the quantum spin liquid candidate Na2BaCo(PO4)2. Here the material exhibits a number of interesting properties including the lack of magnetic order