All Stories

  1. Non-Hermitian corner skin effect in a two-dimensional photonic crystal
  2. Topological charges, Fermi arcs, and surface states of K 4 ...
  3. Conductance Switching in an Asymmetric Single-Molecule Junction
  4. Optically induced spin Hall current in Janus transition metal dichalcogenides
  5. Optically induced spin Hall current in monolayer Janus NbSSe: a first-principles study
  6. Strain effects on the electronic properties of cobalt-based coordination nanosheets
  7. Wilson loop and topological properties in a three-dimensional woodpile photonic crystal
  8. Superconductivity in Ca-intercalated bilayer silicene
  9. Topological Electronic States of 2D HexNet
  10. Optically Generated Spin Current in Two-Dimensional Metallic 2H-MX2 (M = Nb and Ta and X= S and Se): Role of Anisotropic Spin Splitting
  11. Microwave hinge states in a simple cubic lattice photonic crystal insulator
  12. Effective Conduction Path of a C60 Chain in a Nanogap Electrode
  13. Topological edge and corner states in the biphenylene network
  14. Topological edge and corner states in biphenylene photonic crystal
  15. Approximating maximally localized Wannier functions with position scaling eigenfunctions
  16. Electromechanical Switching of a C60 Chain in a Nanogap
  17. Symmetry manipulation of nonlinear optical effect for metallic transition-metal dichalcogenides
  18. Enhanced valley polarization of graphene on h -BN under circularly polarized light irradiation
  19. Fullerene Nanostructure-Coated Channels Activated by Electron Beam Lithography for Resistance Switching
  20. Nonlinear optical Hall effect of few-layered NbSe2
  21. Additive rule of real and reciprocal space topologies at disclinations
  22. Thickness-dependent Raman active modes of SnS thin films
  23. Valley-dependent Corner States in Honeycomb Photonic Crystal without Inversion Symmetry
  24. Higher-order topology and fractional charge in monolayer graphene
  25. Optically induced spin current in monolayer NbSe2
  26. Theory of Pressure-Induced Rejuvenation and Strain Hardening in Metallic Glasses
  27. Structural relaxation time and dynamic shear modulus of glassy graphene
  28. Purely in-plane ferroelectricity in monolayer SnS at room temperature
  29. Theoretical and Experimental Study of Compression Effects on Structural Relaxation of Glass-Forming Liquids
  30. Momentum-selective optical absorption in triptycene molecular membrane
  31. Deep Learning for the Inverse Design of Mid-Infrared Graphene Plasmons
  32. Theory of Structural and Secondary Relaxation in Amorphous Drugs under Compression
  33. Molecular relaxations in supercooled liquid and glassy states of amorphous gambogic acid: Dielectric spectroscopy, calorimetry, and theoretical approach
  34. Effects of Mid‐Infrared Graphene Plasmons on Photothermal Heating
  35. Cooperative nanoparticle self-assembly and photothermal heating in a flexible plasmonic metamaterial
  36. Coupling between structural relaxation and diffusion in glass-forming liquids under pressure variation
  37. Enhanced solar photothermal effect of PANi fabrics with plasmonic nanostructures
  38. Topological edge states in the Su-Schrieffer-Heeger model
  39. Photonic crystal nanocavity based on a topological corner state
  40. Theoretical Model for the Structural Relaxation Time in Coamorphous Drugs
  41. Photonic Weyl semimetals in two-dimensional dielectric arrays
  42. Helical Topological Edge States in a Quadrupole Phase
  43. Topological edge states induced by the Zak phase in A3B monolayers
  44. Confinement effects on the solar thermal heating process of TiN nanoparticle solutions
  45. Effects of cooling rate on structural relaxation in amorphous drugs: elastically collective nonlinear langevin equation theory and machine learning study
  46. Nanocavity based on a topological corner state in a two-dimensional photonic crystal
  47. Multilayered Plasmonic Nanostructures for Solar Energy Harvesting
  48. Layer-by-Layer Oxidation Induced Electronic Properties in Transition-Metal Dichalcogenides
  49. Electronic Structure of Two-Dimensional Hydrocarbon Networks of sp2 and sp3 C Atoms
  50. Topological photonic crystals with zero Berry curvature
  51. Graphene Nanotechnology
  52. Topological Edge States of Honeycomb Lattices with Zero Berry Curvature
  53. Thermal Hall conductivity of spin-triplet superconductor with time reversal symmetry breaking
  54. Novel Topological Phase with a Zero Berry Curvature
  55. Thermal Hall conductivity in the spin-triplet superconductor with broken time-reversal symmetry
  56. Universal self-amplification channel for surface plasma waves
  57. Thermal Hall Conductivity in a Multiband Chiral p-Wave Superconductor
  58. Numerical study of carbon nanotubes under circularly polarized irradiation
  59. Optical excitation of surface plasma waves without grating structures
  60. Thermal Hall conductivity and topological transition in a chiralp-wave superconductor forSr2RuO4
  61. Self-assembled honeycomb lattice in the monolayer of cyclic thiazyl diradical BDTDA (= 4,4′-bis(1,2,3,5-dithiadiazolyl)) on Cu(111) with a zero-bias tunneling spectra anomaly
  62. Retardation effects on plasma waves in graphene, topological insulators, and quantum wires
  63. Magnetization due to localized states on graphene grain boundary
  64. Momentum shift of Dirac cones in the silicene-intercalated compoundCaSi2
  65. Topological aspect and transport property in multi-band spin-triplet chiralp-wave superconductor Sr2RuO4
  66. Self-Limiting Layer-by-Layer Oxidation of Atomically Thin WSe2
  67. Vacancy effects on electronic and transport properties of graphene nanoribbons
  68. Effect of Lishitz Transition on Thermal Transport Properties in Sr2RuO4
  69. Effect of the RuO6 Octahedron Rotation at the Sr2RuO4 Surface on Topological Property
  70. Nanoporous Carbon Tubes from Fullerene Crystals as the π-Electron Carbon Source
  71. Edge effect on a vacancy state in semi-infinite graphene
  72. Decomposition into propagating and evanescent modes of graphene ribbons
  73. Theory of carrier transport in graphene double-layer structure with carrier imbalance
  74. Stacking sequence dependence of electronic properties in double-layer graphene heterostructures
  75. Spin and charge excitations in zigzag honeycomb nanoribbons: Effect of many body correlation
  76. Strong Enhancement of Raman Scattering from a Bulk-Inactive Vibrational Mode in Few-Layer MoTe2
  77. Formation mechanism of bound states in graphene point contacts
  78. Mode-Matching Approach to Current Blocking Effect in Graphene Nanoribbons
  79. Topological and edge state properties of a three-band model for Sr 2 RuO 4
  80. Topological aspects and transport properties of edge states in the multi-band superconductor Sr2RuO4
  81. Thickness-Dependent Interfacial Coulomb Scattering in Atomically Thin Field-Effect Transistors
  82. Dielectric environment effect on carrier mobility of graphene double-layer structure
  83. Experimental Approaches to Graphene Electron Transport for Device Applications
  84. Interacting spins and holes in zigzag edge nanographene
  85. Edge state induced metallicity in zigzag BC3 ribbons
  86. Magnetism of Multi-Orbital Edge States in Sr2RuO4
  87. ELECTRONIC STATES AND LOCAL DENSITY OF STATES NEAR GRAPHENE CORNER EDGE
  88. Nanoscale and edge effect on electronic properties of graphene
  89. A single particle Hamiltonian for electro-magnetic properties of graphene nanoribbons
  90. Tuning Charge and Spin Excitations in Zigzag Edge Nanographene Ribbons
  91. Properties of edge states in a spin-triplet two-band superconductor
  92. Anomalous energy-gap behaviour of armchair BC3 ribbons due to enhanced π-conjugation
  93. Electronic transport of graphene nanoribbons: Effect of edges and geometry
  94. Magnetic response of conductance peak structure in junction-confined graphenenanoribbons
  95. ELECTRONIC STATES AND LOCAL DENSITY OF STATES NEAR GRAPHENE CORNER EDGE
  96. Edge States and Stacking Effects in Nanographene Systems
  97. Electronic States and Local Density of States in Graphene with a Corner Edge Structure
  98. Electron Wave Function in Armchair Graphene Nanoribbons
  99. Tight-Binding Approach to Initial Stage of the Graphitization Process on a Vicinal SiC Surface
  100. Electronic and Transport Properties of Graphene Nanoribbons
  101. Tight-Binding Approach to Initial Stage of the Graphitization Process on a Vicinal SiC Surface
  102. Electronic Properties of Graphene Nanoribbons
  103. Polarization dependence of Raman spectra in strained graphene
  104. Physical properties of nano-graphene
  105. Soliton trap in strained graphene nanoribbons
  106. Electronic states of graphene nanoribbons and analytical solutions
  107. Berry's phase for standing waves near graphene edge
  108. Chiral gauge theory for the graphene edge
  109. Identifying the Orientation of Edge of Graphene Using G Band Raman Spectra
  110. Edge States and Flat Bands of Graphene Nanoribbons with Edge Modification
  111. Physical properties of nano-graphene
  112. Electronic transport properties and perfectly conducting channel of the disordered graphene nanoribbons
  113. Kohn anomalies in graphene nanoribbons
  114. Electronic transport properties of graphene nanoribbons
  115. Control of electric current by graphene edge structure engineering
  116. Hamiltonian Decomposition for Bulk and Surface States
  117. Nearly perfect single-channel conduction in disordered armchair nanoribbons
  118. Conductance Distribution in Disordered Quantum Wires with a Perfectly Conducting Channel
  119. Electronic transport properties of disordered graphene nanoribbons
  120. Edge effect on electronic transport properties of graphene nanoribbons and presence of perfectly conducting channel
  121. Enhanced Conductance Fluctuation due to the Zero-Conductance Fano Resonances in the Quantum Point Contact on Graphene
  122. Conductance Fluctuations in Disordered Wires with Perfectly Conducting Channels
  123. Peculiar electronic transport properties of disordered nanographene ribbons
  124. Averaged Conductance of the Three-Edge Chalker–Coddington Model
  125. Perfectly Conducting Channel and Universality Crossover in Disordered Graphene Nanoribbons
  126. Conductance of Disordered Wires with Unitary Symmetry: Role of Perfectly Conducting Channels
  127. Distribution of Transmission Eigenvalues in Disordered Wires with Symplectic Symmetry
  128. Superconductivity in non-centrosymmetric materials
  129. Low-Energy Physical Properties of Edge States in Nanographite Systems
  130. Conductance of Disordered Wires with Symplectic Symmetry :Random-matrix Approach and Numerical Simulation
  131. Spin and Charge Transport Properties in Quasi-One Dimensional Anomalous Hall System
  132. Basic properties of a vortex in a noncentrosymmetric superconductor
  133. Spatially resolved NMR relaxation rate in a noncentrosymmetric superconductor
  134. Nuclear magnetic relaxation rate in a noncentrosymmetric superconductor
  135. Temperature dependence of the superfluid density in a noncentrosymmetric superconductor
  136. Unconventional superconductivity in non-centrosymmetric materials
  137. Enhanced coherence of antinodal quasiparticles in a dirty d -wave superconductor
  138. Magnetic vs. charge ordered states, and electric capacitance in zigzag nanographite ribbons
  139. Theoretical investigation on electronic properties of topological materials: Möbius nanographite and conjugated polymers
  140. Effect of spin-orbit coupling on zero-conductance resonances in asymmetrically coupled one-dimensional rings
  141. Magnetic and charge orders in zigzag nanographene ribbons
  142. Novel electronic states in graphene ribbons—competing spin and charge orders
  143. Electronic states and persistent current of nanographite ring
  144. Theoretical study on novel electronic properties in nanographite materials
  145. Spin- and charge-polarized states in nanographene ribbons with zigzag edges
  146. Random-Matrix Approach to Quantum Electron Transport in Metallic Carbon Nanotubes
  147. DC Josephson Current through Nano-Graphite Ribbons
  148. Magnetic Structure of Nano-Graphite Möbius Ribbon
  149. DC Josephson current through the nanographite ribbon junctions
  150. ELECTRICAL CONDUCTANCE OF ZIGZAG NANOGRAPHITE RIBBONS WITH LOCALLY APPLIED GATE VOLTAGE
  151. Numerical Study of the Lattice Vacancy Effects on the Single-Channel Electron Transport of Graphite Ribbons
  152. Electronic transport properties of nanographite ribbon junctions
  153. Phase Slip in Mesoscopic Charge-Density-Wave Systems
  154. Single-channel electronic transport properties of nano-graphite ribbons
  155. Electronic transport through nanographite ribbon junctions
  156. Magnetic instability at the surface of a d-wave superconductor
  157. Magnetic properties of nano-graphites at low temperature
  158. Instabilities at [110] surfaces of d x 2 − y 2 superconductors
  159. Zero-Conductance Resonances due to Flux States in Nanographite Ribbon Junctions
  160. Magnetic and Transport Properties of Nanographites
  161. Electronic Structure and Surface-Localized State of Hyper-Graphite Network
  162. Electronic and magnetic properties of nanographite ribbons
  163. Spin Wave Mode of Edge-Localized Magnetic States in Nanographite Zigzag Ribbons
  164. Magnetic field effect on graphite ribbons
  165. グラファイトの「欠陥」と「端」 π電子系のナノメター効果
  166. Magnetism of Nanometer-Scale Graphite with Edge or Topological Defects
  167. Peculiar Localized State at Zigzag Graphite Edge
  168. Localized electronic states on graphite edge
  169. Magnetic structure of graphite ribbon