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Quantum to classical crossover under dephasing effects in a two-dimensional percolation model
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作者 Junjie Qi Haiwen Liu +2 位作者 Chui-Zhen Chen Hua Jiang X.C.Xie 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2020年第2期130-134,共5页
Scaling theory predicts complete localization in d = 2 in quantum systems belonging to the orthogonal class(i.e., with timereversal symmetry and spin-rotation symmetry). The conductance g behaves as g^exp(-L/l) with s... Scaling theory predicts complete localization in d = 2 in quantum systems belonging to the orthogonal class(i.e., with timereversal symmetry and spin-rotation symmetry). The conductance g behaves as g^exp(-L/l) with system size L and localization length l in the strong disorder limit. However, classical systems can always have metallic states in which Ohm’s law shows a constant g in d=2. We study a two-dimensional quantum percolation model by controlling dephasing effects. The numerical investigation of g aims at simulating a quantum-to-classical percolation evolution. An unexpected metallic phase, where g increases with L, generates immense interest before the system becomes completely classical. Furthermore, the analysis of the scaling plot of g indicates a metal-insulator crossover. 展开更多
关键词 quantum percolation model dephasing effects metal-insulator crossover
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Investigation of the correlation between internal gradients and dephasing effect in inhomogeneous field 被引量:1
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作者 AN TianLin XIAO LiZhi +2 位作者 LI Xin LIU HuaBing ZHANG ZongFu 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第9期1676-1683,共8页
Internal magnetic gradient plays a significant role in Nuclear Magnetic Resonance(NMR)measurements of fluid saturated porous media.The quantitative characterization and application of this physical phenomenon could ef... Internal magnetic gradient plays a significant role in Nuclear Magnetic Resonance(NMR)measurements of fluid saturated porous media.The quantitative characterization and application of this physical phenomenon could effectively improve the accuracy of NMR measurements and interpretations.In this paper,by using the equivalent magnetic dipole method,the three-dimensional distribution of internal induced magnetic field and its gradients in the randomly packed water saturated glass beads are quantitatively characterized.By simulating the diffusive motion of water molecules in porous media with random walk method,the computational dephasing effects equation related to internal gradients is deduced.Thereafter,the echo amplitudes are obtained and the corresponding T2-G spectrum is also inverted.For the sake of verifying the simulation results,an experiment is carried out using the Halbach core analyzing system(B0=0.18 T,G=2.3 T/m)to detect the induced internal field and gradients.The simulation results indicate the equivalent internal gradient is a distribution of 0.1-0.3 T/m,which matched well with the experimental results. 展开更多
关键词 porous media NMR internal gradients dephasing effect inhomogeneous field
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