paper

Phase separation and metal-insulator transitions in the spin-one-half Falicov-Kimball model

arXiv:cond-mat/9901312

Abstract

The ground-state phase diagram of the spin-one-half Falicov-Kimball model (FKM) is studied in the one dimension using small-cluster exact-diagonalization calculations. The resultant exact solutions are used to examine possibilities for valence and metal-insulator transitions in this model. A number of remarkable results are found. (i) The phase separation in the spin-one-half FKM takes place for a wide range of -electron concentrations and - interactions , including large. (ii) In the strong coupling limit () the model exhibits a pressure induced discontinuous insulator-metal transition from an integer-valence state () into another integer-valence state (). (iii) For intermediate values of () the FKM undergoes a few discontinuous intermediate-valence transitions. There are several discontinuous insulator-insulator transitions from to and a discontinuous insulator-metal transition from to . (iv) In the weak coupling limit () the model undergoes a few consecutive discontinuous and continuous intermediate-valence transitions as well as a discontinuous metal-insulator transition.

12 pages, 6 figures