Scopes
(The following topics include but are not limited to)
Track 1: Condensed Matter Physics and Quantum Phenomena
Strongly correlated electron systems and unconventional superconductivity
Topological quantum systems and topological insulators
Quantum magnetism, skyrmions, and spin ice
Quantum phase transitions and critical phenomena
Low-dimensional physics and two-dimensional materials (graphene, transition metal sulfides, etc.)
Quantum transport and quantum Hall effect
Multiferroic materials and magnetoelectric coupling
Heavy Fermi-fermion systems and the Tanaka effect
Non-equilibrium physics and ultrafast dynamics
Soft condensed matter physics and active substances
Quantum entanglement and quantum thermodynamics
Strong spin-orbit coupling effects
Computational condensed matter physics and theoretical models
Track 2: New Materials and Advanced Functional Materials
Magnetic quantum functional materials and spin electronic devices
Superconducting materials and new electronic materials
Nanomaterials and synthesis and characterization of low-dimensional structures
Two-dimensional material heterojunctions and van der Waals materials
New energy materials and photovoltaic technology
Topological materials and Dirac/Weyl semimetals
Carbon-based materials (diamond, carbon nanotubes, graphene) and quantum defects
Superlattices, superstructures, and artificial microstructures
Multiferroic and magnetoelectric functional materials
Organic electronic materials and hybrid organic-inorganic systems
Physical properties of materials under extreme conditions
Polymers, composite materials, and biomaterials
Self-assembly and nanofabrication of functional nanomaterials
Track 3: Quantum Science and Quantum Technology
Quantum computing and quantum information science (quantum bits, quantum gates, quantum error correction)
Quantum simulation and quantum many-body physics (ultracold atoms, optical lattices, artificial gauge fields)
Quantum material design and quantum state control
Quantum transport and spin electronics devices
Quantum optics and cavity quantum electrodynamics
Topological quantum computing and fault-tolerant quantum schemes
Quantum sensing and quantum precision measurement
Quantum computing schemes based on superconductivity, ion traps, and optical quantum platforms
Quantum entanglement theory and quantum non-locality
Quantum thermodynamics and quantum information theory
Quantum machine learning and quantum artificial intelligence ......
Important Dates/重要日期
  • Submission Deadline: 2026.9.17
  • Registration Deadline: 2026.9.24
  • Conference Date: 2026.10.2
  • Notification Date: About a week after the submission
Submission Portal/投稿方式

Mail Address:  coartn_aeps@163.com

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

蒋老师
  • +86-15680824672(微信同号)
  • 3761629232
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