Welcome to the

International Conference on Plasma Physics and Fusion Technology (ICPFFT-26)

 19th September 2026  ||    Coimbatore, India  ||    Hybrid Mode
Proudly organized by the International Research & Conference Forum (IRCF)

Join global experts to present, connect, and innovate.

Conference Session Tracks

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

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.

Aligned with the SDGs

UN Sustainable Development Goals

UN Sustainable Development Goals

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.

SDG 7
SDG 7 Affordable and Clean Energy
SDG 9
SDG 9 Industry, Innovation and Infrastructure
SDG 12
SDG 12 Responsible Consumption and Production
SDG 13
SDG 13 Climate Action

All Session Tracks

Browse every track scheduled for this conference.

01
Track

Advancements in Magnetic Confinement Systems

This track will explore the latest developments in magnetic confinement techniques, focusing on tokamak and stellarator designs. Emphasis will be placed on innovative approaches to enhance plasma stability and confinement time.

02
Track

Plasma Diagnostics and Measurement Techniques

This session will cover cutting-edge diagnostic tools and methodologies for characterizing plasma properties. Discussions will include optical, electromagnetic, and particle-based techniques for real-time plasma analysis.

03
Track

High Temperature Plasma Physics

This track focuses on the fundamental physics of high temperature plasmas, including their behavior and interactions. Research on confinement, stability, and energy transport in high-energy environments will be highlighted.

04
Track

Plasma Instabilities and Turbulence

This session will delve into the mechanisms and implications of plasma instabilities and turbulence. Contributions will address theoretical models, experimental observations, and their impact on confinement and fusion performance.

05
Track

Fusion Energy: Pathways and Challenges

This track will examine the current state and future prospects of fusion energy as a viable power source. Topics will include technological hurdles, economic considerations, and policy implications for fusion development.

06
Track

Laser-Plasma Interactions

This session will investigate the dynamics of laser interactions with plasmas, including applications in inertial confinement fusion and material processing. Contributions will focus on both experimental and theoretical aspects of these interactions.

07
Track

Plasma Waves and Wave-Particle Interactions

This track will explore the phenomena of plasma waves and their interactions with charged particles. Research on wave propagation, instabilities, and applications in plasma heating will be discussed.

08
Track

Particle Confinement Techniques

This session will focus on innovative methods for particle confinement in plasma systems. Discussions will include magnetic and inertial confinement strategies, as well as advancements in confinement efficiency.

09
Track

Plasma-Material Interaction

This track will address the interactions between plasma and solid materials, focusing on erosion, deposition, and surface modifications. Research will highlight the implications for reactor design and material selection in fusion applications.

10
Track

Plasma Spectroscopy and Diagnostics

This session will cover the application of spectroscopy in plasma diagnostics, emphasizing techniques for analyzing plasma composition and behavior. Contributions will include both experimental and computational studies.

11
Track

Magnetohydrodynamics in Fusion Research

This track will explore the principles of magnetohydrodynamics (MHD) as they apply to plasma confinement and stability. Discussions will include MHD modeling, experimental observations, and implications for fusion reactor design.

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