Isakov S V, Wessel S, Melko R G, Sengupta K, Kim Yong Baek
Department of Physics, University of Toronto, Toronto, Ontario M5S 1A7, Canada.
Phys Rev Lett. 2006 Oct 6;97(14):147202. doi: 10.1103/PhysRevLett.97.147202.
Using large scale quantum Monte Carlo simulations and dual vortex theory, we analyze the ground state phase diagram of hard-core bosons on the kagome lattice with nearest-neighbor repulsion. In contrast with the case of a triangular lattice, no supersolid emerges for strong interactions. While a uniform superfluid prevails at half filling, two novel solid phases emerge at densities rho=1/3 and rho=2/3. These solids exhibit an only partial ordering of the bosonic density, allowing for local resonances on a subset of hexagons of the kagome lattice. We provide evidence for a weakly first-order phase transition at the quantum melting point between these solid phases and the superfluid.
利用大规模量子蒙特卡罗模拟和双涡旋理论,我们分析了具有最近邻排斥作用的 kagome 晶格上硬核玻色子的基态相图。与三角晶格的情况不同,强相互作用时不会出现超固体。在半填充时均匀超流占主导,而在密度 ρ = 1/3 和 ρ = 2/3 时出现两个新的固相。这些固体仅表现出玻色子密度的部分有序,允许在 kagome 晶格六边形的一个子集上存在局部共振。我们提供了证据表明在这些固相和超流之间的量子熔点处存在弱一级相变。