نتایج جستجو برای: plasma inertial confinement

تعداد نتایج: 388472  

Journal: :Physical review letters 2004
S P Regan J A Delettrez V N Goncharov F J Marshall J M Soures V A Smalyuk P B Radha B Yaakobi R Epstein V Yu Glebov P A Jaanimagi D D Meyerhofer T C Sangster W Seka S Skupsky C Stoeckl D A Haynes J A Frenje C K Li R D Petrasso F H Séguin

The mixing of cold, high-density shell plasma with the low-density, hot spot plasma by the Rayleigh-Taylor instability in inertial confinement fusion is experimentally shown to correlate with the calculated perturbation feedthrough from the ablation surface to the inner shell surface. A fourfold decrease in the density of shell material in the mix region of direct drive implosions of gas filled...

Journal: :The Review of Laser Engineering 1986

Journal: :Physical review letters 2014
P F Schmit P F Knapp S B Hansen M R Gomez K D Hahn D B Sinars K J Peterson S A Slutz A B Sefkow T J Awe E Harding C A Jennings G A Chandler G W Cooper M E Cuneo M Geissel A J Harvey-Thompson M C Herrmann M H Hess O Johns D C Lamppa M R Martin R D McBride J L Porter G K Robertson G A Rochau D C Rovang C L Ruiz M E Savage I C Smith W A Stygar R A Vesey

Magnetizing the fuel in inertial confinement fusion relaxes ignition requirements by reducing thermal conductivity and changing the physics of burn product confinement. Diagnosing the level of fuel magnetization during burn is critical to understanding target performance in magneto-inertial fusion (MIF) implosions. In pure deuterium fusion plasma, 1.01 MeV tritons are emitted during deuterium-d...

Journal: :Review of Scientific Instruments 2021

Diagnosing plasma magnetization in inertial confinement fusion implosions is important for understanding how magnetic fields affect implosion dynamics and to assess conditions magnetized experiments. Secondary deuterium–tritium (DT) reactions provide two diagnostic signatures infer neutron-averaged magnetization. Magnetically confining tritons from deuterium–deuterium (DD) the hot spot increase...

2007
Ahmed Hassanein

High power and particle deposition on target materials are encountered in many applications including magnetic and inertial fusion devices, nuclear and high energy physics applications, and laser and discharge produced plasma devices. Surface and structural damage to plasma-facing components due to the frequent loss of plasma confinement remains a serious problem for the Tokamak reactor concept...

Journal: :High Power Laser Science and Engineering 2023

Abstract As a typical plasma-based optical element that can sustain ultra-high light intensity, plasma density gratings driven by intense laser pulses have been extensively studied for wide applications. Here, we show the grating two intersecting driver is not only nonuniform in space but also varies over time. Consequently, probe pulse passes through such dynamic will be depolarized, is, its p...

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