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      Burning plasma achieved in inertial fusion

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          Abstract

          Obtaining a burning plasma is a critical step towards self-sustaining fusion energy 1. A burning plasma is one in which the fusion reactions themselves are the primary source of heating in the plasma, which is necessary to sustain and propagate the burn, enabling high energy gain. After decades of fusion research, here we achieve a burning-plasma state in the laboratory. These experiments were conducted at the US National Ignition Facility, a laser facility delivering up to 1.9 megajoules of energy in pulses with peak powers up to 500 terawatts. We use the lasers to generate X-rays in a radiation cavity to indirectly drive a fuel-containing capsule via the X-ray ablation pressure, which results in the implosion process compressing and heating the fuel via mechanical work. The burning-plasma state was created using a strategy to increase the spatial scale of the capsule 2,3 through two different implosion concepts 4–7. These experiments show fusion self-heating in excess of the mechanical work injected into the implosions, satisfying several burning-plasma metrics 3,8. Additionally, we describe a subset of experiments that appear to have crossed the static self-heating boundary, where fusion heating surpasses the energy losses from radiation and conduction. These results provide an opportunity to study α-particle-dominated plasmas and burning-plasma physics in the laboratory.

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          Most cited references42

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          Development of the indirect‐drive approach to inertial confinement fusion and the target physics basis for ignition and gain

          John Lindl (1995)
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            Laser Compression of Matter to Super-High Densities: Thermonuclear (CTR) Applications

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              The Physics of Inertial Fusion

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                Author and article information

                Contributors
                Journal
                Nature
                Nature
                Springer Science and Business Media LLC
                0028-0836
                1476-4687
                January 27 2022
                January 26 2022
                January 27 2022
                : 601
                : 7894
                : 542-548
                Article
                10.1038/s41586-021-04281-w
                81e23730-f94f-40f5-8643-5c9bb15f9e8e
                © 2022

                https://creativecommons.org/licenses/by/4.0

                https://creativecommons.org/licenses/by/4.0

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