Fusion Energy: Advancements in Confinement, Materials, and AI
*Corresponding Author: Dr. Pavel Morozov, Dept. of Nuclear Physics MEPhI, Russia, Email: p.morozov@mephi-demo.ruReceived Date: Mar 01, 2025 / Accepted Date: Mar 31, 2025 / Published Date: Mar 31, 2025
Citation: Morozov DP (2025) Fusion Energy: Advancements in Confinement, Materials, and AI. Innov Ener Res 14: 445.DOI: 10.4172/2576-1463.1000445
Copyright: © 2025 Dr. Pavel Morozov This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permitsunrestricted use, distribution and reproduction in any medium, provided the original author and source are credited.
Abstract
This collection of research papers details crucial advancements in fusion energy technology. Key areas include plasma confine
mentandtransport in tokamaks, materials science for divertors and structural components, inertial confinement fusion, superconduct
ing magnet development, AI/ML applications for plasma control, tritium breeding blanket design, alternative confinement concepts
like stellarators, and engineering challenges for remote maintenance. These studies collectively contribute to the ongoing global
effort to achieve sustainable and economically viable fusion power.

