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【期刊论文】Spin Hall Effect in a Doped Mott Insulator
寇谡鹏, Su-Peng Kou , , Xiao-Liang Qi and Zheng-Yu Weng
,-0001,():
-1年11月30日
The existence of conserved spin Hall currents is shown in a strongly correlated system without involving spin-orbit coupling. The spin Hall conductivity is determined by intrinsic bulk properties, which remains finite even when the charge resistivity diverges in strong magnetic fields at zero temperature. The state in the latter limit corresponds to a spin Hall insulator. Such a system is a doped Mott insulator described by the phase string theory, and the spin Hall e ect is predicted to coexist with the Nernst e ect to characterize the intrinsic properties of the low-temperature pseudogap phase.
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【期刊论文】Two-dimensional spin-1 frustrated Heisenberg model with valence-bond ground states
寇谡鹏, Zi Cai , Shu Chen , ∗, Supeng Kou , and Yupeng Wang
,-0001,():
-1年11月30日
In this paper, we propose a method to understand the nature for the quantum disorder phase of the two-dimensional (2D) high spin frustrated model. The ground state and excitation properties of a fully frustrated 2D spin-1 model are studied based on a model whose groundstate can be found exactly. By analogy to the pseudo-potential approach in the fractional quantum Hall effect, we conclude that the ground states of the fully frustrated spin-1 model are doubly degenerate valance bond solid (VBS) states along the horizontal or vertical direction of the square lattice. We also find that the ground state could be characterized by a nonzero string order, which rarely happened in the 2D case. The method that we used reveals the connection between the fractional quantum hall e ect and the frustrated 2D antiferromagnetism system. The VBS states capture the main character of the disordered phase in the 2D spin-1 frustrated system, and can be verified by a numerical method.
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【期刊论文】Topological Gauge Structure and Phase Diagram of a Doped Antiferromagnet
寇谡鹏, Su-Peng Kou and Zheng-Yu Weng
,-0001,():
-1年11月30日
We show that a topological gauge structure in an e ective description of the t-J model gives rise to a global phase diagram of antiferromagnetic (AF) and superconducting (SC) phases in a weakly doped regime. Dual confinement and deconfinement of holons and spinons play essential roles here, with a quantum critical point at a doping concentration xc≃0.043. The complex experimental phase diagram at low doping is well described within such a framework.
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