Phase diagram of hard-core bosons on a frustrated zig-zag ladder

Abstract

We study hard-core bosons with unfrustrated nearest-neighbor hopping t and repulsive interaction V on a zig-zag ladder. As a function of the boson density and V/t, the ground state displays different quantum phases. A standard one-component Tomonaga-Luttinger liquid is stable for <1/3 (and >2/3) at any value of V/t. At commensurate densities =1/3, 1/2, and 2/3 insulating (crystalline) phases are stabilized for a sufficiently large interaction V. For intermediate densities 1/3<<2/3 and large V/t, the ground state shows a clear evidence of a bound state of two bosons, implying gapped single-particle excitations but gapless excitations of boson pairs. Here, the low-energy properties may be described by a two-component Tomonaga-Luttinger liquid with a finite gap in the antisymmetric sector. Finally, for the same range of boson densities and weak interactions, the system is again a one-component Tomonaga-Luttinger liquid with no evidence of any breaking of discrete symmetries, in contrast to the frustrated case, where a Z2 symmetry breaking has been predicted.

0

Turn this paper into a lesson

ArcXiv compiles a structured reading guide from this paper's metadata: plain-English importance, contributions, prerequisite concepts, which sections to read first, flashcards, and a quiz. Grounded in the abstract, never invented.

Discussion (0)

Sign in to join the discussion.

Loading comments…