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- W2077966077 abstract "The dynamics of spin-1/2 two-dimensional quantum Heisenberg antiferromagnets are reexamined in the framework of a self-consistent correlation theory based on the three-pole approximation of the relaxation function. The self-consistency is imposed between the static and dynamic variables, which dramatically changes the picture of the spin dynamics by broadening the quantum critical (QC) region (0.2JTJ) and narrowing the renormalized classical (RC) region (T0.1J), resulting in a small spin stiffness as required by other theories. As an application of the theory, the calculated nuclear relaxation rates of 1/${mathit{T}}_{1}$ and 1/${mathit{T}}_{2mathit{G}}$ in ${mathrm{La}}_{2}$${mathrm{CuO}}_{4}$, without any adjustable parameters, agree well with the recent measurements in the whole temperature scale that covers both QC and RC regimes." @default.
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- W2077966077 date "1995-07-01" @default.
- W2077966077 modified "2023-09-27" @default.
- W2077966077 title "Self-consistent three-pole approximation study of the spin dynamics in two-dimensional antiferromagnetic Heisenberg paramagnets" @default.
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- W2077966077 doi "https://doi.org/10.1103/physrevb.52.46" @default.
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