Scopes
(including but not limited to):
Topic 1: Condensed Matter Physics
Condensed state theory and calculation methods, strongly correlated electronic systems, quantum phase transitions and critical phenomena, statistical physics and non-equilibrium physics, low dimensional and mesoscopic physics, topological states and topological quantum materials, unconventional superconductivity mechanism, quantum spin liquids and quantum magnets, multiferrous physics and magnetoelectric coupling, spintronics foundation, orbital physics and strongly correlated electrons, disordered systems and glassy state physics, soft matter physics and complex fluids, polymer physics and polymers, colloid and interface science, liquid crystals and orientation order, glassy transition and relaxation dynamics, biomacromolecule physics, membrane and vesicle physics, cellular mechanics and biorheology, active substances and collective movement, self-assembly and molecular recognition, gel and network structure, Microrheology and micro dynamics, quantum simulation, nano magnetism Solid state quantum information and computing, topological quantum states and topological materials, strongly correlated systems and machine learning;
Topic 2: Material Physics
The relationship between material physics and structural properties, solid-state physics and band engineering, crystallography and crystal growth physics, defect physics and diffusion mechanism, mechanical properties physics of materials, material thermodynamics and phase transition, electronic materials physics, optoelectronic materials physics, magnetic materials physics, dielectric/ferroelectric/piezoelectric materials physics, thermoelectric materials physics, superconducting materials physics, semiconductor materials and device physics, wide bandgap semiconductor physics, low dimensional materials (graphene/transition metal sulfides, etc.), nanomaterials and quantum confinement effects, perovskite materials physics, energy materials (battery/photovoltaic/catalytic) physics, storage materials and phase change storage, spintronic materials and devices, multiferroic materials and multifunctional coupling, metamaterials and artificial microstructures, intelligent materials and response physics Physics of organic/polymer optoelectronic materials;
Topic Three: Solid Mechanics
Solid mechanics constitutive theory and models, elasticity and plasticity, fracture mechanics and fatigue damage, contact mechanics and tribology, viscoelasticity and viscoplasticity, multiscale mechanics and cross scale correlations, micro nano mechanics and scale effects, multi field coupling mechanics (thermal force electric magnetic), heterogeneous and composite materials mechanics, impact dynamics and wave propagation, creep and high-temperature mechanical behavior, experimental solid mechanics methods and techniques, computational solid mechanics and numerical simulation, nonlinear mechanics and stability, damage mechanics and failure analysis, biomechanics and biomaterials, dynamic impact and explosion mechanics, wave/vibration and noise, composite materials mechanics, multi physics field coupling mechanics and multifunctional materials mechanics, nanomechanics, contact/interface and surface mechanics Mechanics, Physical Mechanics, Extreme Condition Mechanics Geotechnical and Civil Engineering Mechanics, Soft Matter and Robotics Mechanics, Fluid Structure Coupling Mechanics.
Important Dates | 重要日期
  • Submission Deadline: October 7, 2026
  • Registration Deadline: October 12, 2026
  • Conference Date: October 27, 2026
  • Notification Date: About a week after the submission
Submission Portal | 投稿方式

Mail Address:  ei_confer@126.com

If you have any question or need any assistance regarding the conference, please feel free to contact our conference specialists:

江老师
  • 17162867270
  • 3896770362
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