凝聚态物理前沿讲座方忠QuantumSimulationintheFieldofSpintronic.pptx
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1、8/2/2024方方 忠忠中国科学院物理研究所,理论室中国科学院物理研究所,理论室 Quantum Simulation in the Field ofSpintronics and OrbitronicsAcknowledgement:Y.G.Yao,K.Terakura N.Nagaosa Y.Tokura凝聚态物理前沿讲座凝聚态物理前沿讲座第1页8/2/2024 Contents 1.Quantum simulations based on DFT (1)Simple introduction to first-principles calculations (2)Our method,
2、code,and computer facilities 2.Dissipationless quantum current for spintronics (1)Anomalous Hall Effect (2)Spin Hall Current (3)Anomalous Nernst Effect 3.Orbiton and Orbitronics (1)Phase diagram of La1-xSrxMnO3 (2)Orbital-dependent phase control in Ca2-xSrxRuO4 (3)Magnetism in double perovskites 4.S
3、urface of transition-metal oxides第2页8/2/2024Quantum Simulation based on DFTAtoms+electronsElectronsMany-bodyElectronsSingle-particleDensityFunctionalAdiabatic ApproximationHohenberg-KohnKohn-ShamHellmann-FeynmanForce and StressMDSCF第3页8/2/2024Self-consistent Solver for KS problemSCFLDAGGALDA+U第4页8/2
4、/2024LDA+U method第5页8/2/2024Pseudopotential SchemeNormal-conservingPseudopotentialUltra-SoftPseudopotential第6页8/2/2024Virtual Crystal Approxmation(VCA)For virtual atomsSolve Schrodinger equationIonic unscreened potential第7页8/2/2024How to solve the single particle problem Real Space (no FFT)Finite el
5、ement Finite difference Multi-grid Adaptive Wavelet Reciprocal Space (with FFT)LACO LMTO FLAPW PAW Plane-wave Greens function Pseudopotential,ASA,第8页8/2/2024Other Problems in Simulations1.Exchange-correlation functional2.Strongly-correlated systems3.Force calculation&Molecular dynamics4.Magnetic,opt
6、ical&electronic properties5.Excited States6.Non-equilibrium&Time-dependent process7.Order(N)method&Large scale8.Catalysis,Chemical reaction,Bio-systems9.第9页8/2/20241.First-principles calculations based on DFT2.Plane-wave basis3.Ultra-soft Pseudo-potential4.LDA,GGA,LDA+U,etc5.Virtual crystal approxim
7、ation(VCA)6.Real space RMM for larger systems7.Full parallelization by MPI8.SGI,IBM-SP,Alpha,Cray,VPP,PC-ClusterOur Method第10页8/2/2024 STATE Code:(Simulational Tool for Atom Technology)Main Contributors:Z.Fang,Y.Morikawa,T.Ikeda,H.Sawadaand other JRCAT membersFor details:Z.Fang,et.al,J.Phys:Cond.Mat
8、t.,14,3001().(review article)100,000 lines,Accuracy 1meV/Atom,200 atoms.Widely used in Japan,Taiwan,Korea,Denmark,etc.第11页8/2/2024IBM SP690,64 CPUs,128G,1T-disk第12页8/2/2024Three Characters of Electron Charge Spin Orbitalwell known “hot”topic newExtensively used being used will be usedI,V,Charge curr
9、entCharge excitation spin wave orbitonCharge current spin current movement anisotropy functionality .第13页8/2/2024SpintronicsThe electron has both charge and spin.Mostly only the charge property is used.Energy scale for the charge interaction is high,1eV,energy scale for the spin interaction is low,1
10、0-100 meV.Much lower power consumption for spin-based device.Spin-based electronics also promises a greater integration between the logic and storage devices第14页8/2/2024Problems for Spintronic devices spin injection into semiconductor Ohmic injection from ferromagnet Low efficiency(Difficulty):Ferro
11、magnetic metal:conductivity mismatch spin polarization is almost lost at interface.Ferromagnetic semiconductor (e.g.Ga1-xMnxAs):Curie temperature much lower than room temp.Ferromagnetic tunnel junction.spin detection by ferromagnet spin transport in semiconductor spin relaxation timeOptical pump and
12、 probe第15页8/2/2024Only two known examples of dissipationless transport in solids!Supercurrent in a superconductor is dissipationless,since London equation related J to A,not to E!Vector potential=odd under T,charge current=odd under T.In the QHE,the Hall conductivity is proportional to the magnetic
13、field B,which is odd under T.Laughlin argument:all states below the fermi energy contribute to the Hall conductance.Streda formula,TKNN formula relates the Hall conductance to the 1st Chern number.第16页8/2/2024New dissipationless transport in solidsdue to spin-orbital coupling!Anomalous Hall Effect(c
14、harge current):1 T.Jungwirth,et.al.,PRL,88,207208();2 Z.Fang,et.al,SCIENCE,302,92()3 Y.G.Yao,et.al,PRL,92,37204();4 W.L.Lee,et.al,SCIENCE,303,1647()Conventional:xy =R0H +4RSM Intrinsic Mechanism:xyxy(M)Thus Jx=xyEy is T invariant J is odd,E is even,M is odd Dissipationless spin Hall current:1 S.Mura
15、kami,et.al,SCIENCE,301,1348();2 J.E.Hirsch,et.al.,PRL,83,1834(1999)3 J.Sinova,et.al,PRL,92,126603()4 S.Q.Shen,et.al.,cond-mat/040305.5 Y.Xiong&X.C.Xie,cond-mat/0403083.Spin current is even under T第17页8/2/2024BjHFMjAHEConventional HallAnomalous HallEESpinjSHEESpin Hall第18页8/2/2024Merit of AHE and SHE
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