Back to Search Start Over

Experimental achievement and signatures of ignition at the National Ignition Facility.

Authors :
Zylstra AB
Kritcher AL
Hurricane OA
Callahan DA
Ralph JE
Casey DT
Pak A
Landen OL
Bachmann B
Baker KL
Berzak Hopkins L
Bhandarkar SD
Biener J
Bionta RM
Birge NW
Braun T
Briggs TM
Celliers PM
Chen H
Choate C
Clark DS
Divol L
Döppner T
Fittinghoff D
Edwards MJ
Gatu Johnson M
Gharibyan N
Haan S
Hahn KD
Hartouni E
Hinkel DE
Ho DD
Hohenberger M
Holder JP
Huang H
Izumi N
Jeet J
Jones O
Kerr SM
Khan SF
Geppert Kleinrath H
Geppert Kleinrath V
Kong C
Lamb KM
Le Pape S
Lemos NC
Lindl JD
MacGowan BJ
Mackinnon AJ
MacPhee AG
Marley EV
Meaney K
Millot M
Moore AS
Newman K
Di Nicola JG
Nikroo A
Nora R
Patel PK
Rice NG
Rubery MS
Sater J
Schlossberg DJ
Sepke SM
Sequoia K
Shin SJ
Stadermann M
Stoupin S
Strozzi DJ
Thomas CA
Tommasini R
Trosseille C
Tubman ER
Volegov PL
Weber CR
Wild C
Woods DT
Yang ST
Young CV
Source :
Physical review. E [Phys Rev E] 2022 Aug; Vol. 106 (2-2), pp. 025202.
Publication Year :
2022

Abstract

An inertial fusion implosion on the National Ignition Facility, conducted on August 8, 2021 (N210808), recently produced more than a megajoule of fusion yield and passed Lawson's criterion for ignition [Phys. Rev. Lett. 129, 075001 (2022)10.1103/PhysRevLett.129.075001]. We describe the experimental improvements that enabled N210808 and present the first experimental measurements from an igniting plasma in the laboratory. Ignition metrics like the product of hot-spot energy and pressure squared, in the absence of self-heating, increased by ∼35%, leading to record values and an enhancement from previous experiments in the hot-spot energy (∼3×), pressure (∼2×), and mass (∼2×). These results are consistent with self-heating dominating other power balance terms. The burn rate increases by an order of magnitude after peak compression, and the hot-spot conditions show clear evidence for burn propagation into the dense fuel surrounding the hot spot. These novel dynamics and thermodynamic properties have never been observed on prior inertial fusion experiments.

Details

Language :
English
ISSN :
2470-0053
Volume :
106
Issue :
2-2
Database :
MEDLINE
Journal :
Physical review. E
Publication Type :
Academic Journal
Accession number :
36109932
Full Text :
https://doi.org/10.1103/PhysRevE.106.025202