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National Laboratory of Solid State Microstructures and Department of Physics, Nanjing University | 論文
- Oscillations in Electrochemical Deposition of Zinc
- Oscillations in Electrochemical Deposition of Zinc
- Formation of Arrays of Straight Copper Wires on Solid Substrate by Electrodeposition : Condensed Matter: Structure, etc.
- Investigation of the Polarization-Induced Charges in Modulatlon Doped Al_xGa_N/GaN Heterostructures through Capacitance-Voltage Profiling and Simulation
- Influence of Ferroelectric Polarization on the Properties of Two-Dimensional Electron Gas in Pb(Zr_Ti_)O_3/Al_xGa_N/GaN Structures
- Absence of Suppression in the Persistent Current by Delocalization in Random-dimer Mesoscopic Rings
- Absence of Suppression in the Persistent Current by Delocalization in Random-dimer Mesoscopic Rings
- Quantum Transport And Its Scaling Properties in Thue-Morse Waveguides : Condensed Matter: Electronic Properties, etc.
- Nanocrystallization Characteristics of Amorphous (Fe_Mo_)_B_Si_9 and Fe_B_Si_9 Alloys Treated by Shock Wave
- Very High Hydrogen Dilution Induced Novel Phenomena of Electronic Transport Properties in Hydrogenated Microcrystalline Silicon-Germanium Thin Films Prepared by Plasma Enhanced Chemical Vapor Deposition Method
- Influence of the Ferroelectric Polarization on the Properties of the Two-Dimensional Electron Gas in Pb(Zr_Ti_)O_3/Al_xGa_N/GaN Structures
- Coupled Optical Interface Modes in a Thue-Morse Dielectric Superlattice
- 25aPS-13 鎖状構造を持つコバルト酸化物Sr3Co2O6の合成と磁性(25aPS-3 領域3ポスターセッション,領域3(磁性,磁気共鳴))
- Very High Hydrogen Dilution Induced Novel Phenomena of Electronic Transport Properties in Hydrogenated Microcrystalline Silicon-Germanium Thin Films Prepared by Plasma Enhanced Chemical Vapor Deposition Method
- 23pGP-7 Sr_3Co_2O_6 : a possible frustrated spin-chain material
- Investigation of the Polarization-Induced Charges in Modulation-Doped Al_x- Ga_N/ GaN Heterostructures through Capacitance-Voltage Profiling and Simulation
- Nanocrystallization Characteristics of Amorphous (Fe0.99Mo0.01)78B13Si9 and Fe78B13Si9 Alloys Treated by Shock Wave