Session Tracks

세션 트랙

Conference Session Tracks

학술대회 세션 트랙

This ICMSQT features a diverse range of session tracks designed to cover key research areas, emerging trends, and interdisciplinary innovations within the field of Mathematics.

Each track offers researchers, academicians, industry professionals, and practitioners a platform to present their work, exchange ideas, and explore the advancements shaping the future of the domain.

본 학술대회는 주요 연구 분야, 최신 연구 동향 및 융합 연구 주제를 폭넓게 다루는 다양한 세션 트랙으로 구성되어 있습니다. 각 트랙은 연구자, 교수진, 산업 전문가 및 실무자들이 연구 성과를 발표하고 아이디어를 교류하며 해당 분야의 발전 방향을 함께 모색할 수 있는 기회를 제공합니다.

Aligned with the SDGs

지속가능발전목표(SDGs) 연계

Sustainable Development Goals
UN Sustainable Development Goals
유엔 지속가능발전목표

This conference contributes to global sustainability by aligning its research discussions and academic sessions with key United Nations Sustainable Development Goals, fostering knowledge exchange, innovation, and collaborative engagement.

본 학술대회는 연구 논의와 학술 세션을 유엔 지속가능발전목표와 연계함으로써 지식 교류, 혁신 및 국제 협력을 촉진하고 글로벌 지속가능성에 기여합니다.
SDG 4
SDG 4 Quality Education
SDG 9
SDG 9 Industry, Innovation and Infrastructure

All Session Tracks

전체 세션 트랙

Browse every track scheduled for this conference.

본 학술대회의 모든 세션 트랙을 확인하실 수 있습니다.
01
Track

Foundations of Quantum Mechanics

This track explores the mathematical foundations underlying quantum mechanics, focusing on the axiomatic structures and interpretations of quantum theory. Contributions may include discussions on measurement theory, state spaces, and the role of probability in quantum systems.

02
Track

Operator Algebras in Quantum Theory

This session will delve into the role of operator algebras in the formulation of quantum mechanics and quantum field theory. Papers may address advancements in the algebraic approach to quantum systems and their implications for physical predictions.

03
Track

Functional Analysis and Quantum Systems

This track focuses on the application of functional analysis in the study of quantum systems, particularly in relation to Hilbert spaces and spectral theory. Submissions may explore topics such as self-adjoint operators, spectral measures, and their physical interpretations.

04
Track

Quantum Information Theory

This session aims to investigate the mathematical structures that underpin quantum information theory, including quantum entanglement and information processing. Contributions may include discussions on quantum algorithms, error correction, and the implications for classical information theory.

05
Track

Quantum Computation and Algebraic Structures

This track examines the interplay between quantum computation and algebraic structures, emphasizing the mathematical frameworks that facilitate quantum algorithms. Papers may focus on quantum circuits, gate operations, and the algebraic properties of quantum states.

06
Track

Spectral Theory in Quantum Mechanics

This session will explore the application of spectral theory to quantum mechanics, particularly in the context of observables and their measurement. Submissions may cover topics such as the spectral decomposition of operators and the implications for quantum state evolution.

07
Track

Geometric Approaches to Quantum Theory

This track investigates geometric perspectives in quantum theory, including the use of differential geometry and topology in the analysis of quantum systems. Contributions may explore the geometric formulation of quantum mechanics and its implications for physical theories.

08
Track

Mathematical Physics and Quantum Field Theory

This session focuses on the mathematical rigor in quantum field theory, emphasizing the role of advanced mathematical techniques in understanding physical phenomena. Papers may discuss renormalization, perturbation theory, and the interplay between mathematics and physics.

09
Track

Probability Theory in Quantum Contexts

This track examines the role of probability theory in quantum mechanics, particularly in relation to uncertainty and stochastic processes. Contributions may include discussions on quantum probabilities, Bell's theorem, and the implications for classical probability theory.

10
Track

Algebraic Structures in Quantum Mechanics

This session will explore various algebraic structures that arise in quantum mechanics, including groups, rings, and fields. Papers may focus on the implications of these structures for symmetry, conservation laws, and the mathematical formulation of quantum theories.

11
Track

Interdisciplinary Approaches to Quantum Mathematics

This track encourages interdisciplinary contributions that bridge mathematics with other fields related to quantum theory, such as computer science and information theory. Submissions may explore novel mathematical techniques and their applications in quantum research.

Take Part in the Conference

학술대회 참가하기

Submit your abstract under the most relevant session track, or complete your registration to join the conference.

가장 적합한 세션 트랙에 초록을 제출하시거나, 등록 절차를 완료하여 학술대회에 참가하실 수 있습니다.
Submit Your Abstract 초록 제출 Register Now 지금 등록하기