Registration summary
ConferenceICCMTA
ModeStandard / Physical
ParticipationListener
Registration fee$135.00
Bank charges (5.8%)$7.83
Total payable$142.83
Includes all bank processing charges — the amount above is exactly what will be charged.
Benefits of Registering as Listener
Access to Conference Sessions
Networking Opportunities
Certificate of Participation
Invitation Letter Support
Conference Kit / Materials
Access to Keynote Sessions
• Conference Session Tracks •
SDG-Aligned Research Themes
ICCMTA conference tracks support global knowledge exchange, innovation, and sustainable development priorities across diverse disciplines.
01 Advancements in Condensed Matter Theory +
This track focuses on the latest theoretical developments in condensed matter physics, emphasizing novel approaches and methodologies. Participants are encouraged to present their findings on emergent phenomena and theoretical predictions in various condensed matter systems.
02 Lattice Models and Their Applications +
This session will explore the role of lattice models in understanding complex physical systems, including their applications in simulating real-world materials. Contributions are welcome that demonstrate the effectiveness of lattice models in elucidating phase transitions and critical phenomena.
03 Electronic Correlations in Strongly Correlated Systems +
This track aims to delve into the intricacies of electronic correlations in strongly correlated materials, highlighting both theoretical and computational advancements. Researchers are invited to discuss their insights on the implications of these correlations for material properties and phase behavior.
04 Many-Body Physics and Quantum Simulations +
This session will cover the latest techniques in many-body physics, with a particular focus on quantum simulations as a tool for exploring complex systems. Presentations should address the challenges and breakthroughs in simulating many-body interactions and their consequences.
05 Topological Phases and Quantum Materials +
This track will investigate the fascinating realm of topological phases and their implications for quantum materials. Contributions are encouraged that explore the interplay between topology, electronic structure, and emergent phenomena in novel materials.
06 Superconductivity: Theory and Applications +
This session will focus on the theoretical aspects of superconductivity, including the mechanisms behind superconducting behavior and its potential applications. Researchers are invited to share their findings on new superconducting materials and the role of electronic correlations.
07 Spin Models and Magnetic Phenomena +
This track will explore the theoretical frameworks and applications of spin models in understanding magnetic phenomena. Presentations should highlight recent advancements in the study of magnetism and its relationship with low-dimensional systems.
08 Computational Modeling of Condensed Matter Systems +
This session will focus on the development and application of computational modeling techniques in condensed matter physics. Participants are encouraged to present their work on simulations that provide insights into electronic structure and material properties.
09 Phase Transitions in Low-Dimensional Systems +
This track will investigate the unique characteristics of phase transitions in low-dimensional systems, emphasizing theoretical insights and experimental observations. Contributions should address the challenges posed by reduced dimensionality on phase behavior and stability.
10 Electronic Structure Calculations and Band Theory +
This session will cover advancements in electronic structure calculations and their implications for understanding band theory. Researchers are invited to present their findings on how these calculations inform the design and discovery of new materials.
11 Emergent Phenomena in Quantum Systems +
This track will focus on emergent phenomena in quantum systems, exploring how collective behaviors arise from individual interactions. Contributions should highlight theoretical frameworks and experimental evidence that shed light on these complex behaviors.
