halite$33509$ - перевод на Английский
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halite$33509$ - перевод на Английский

RESEARCH INSTITUTE
National ignition facility; Centurion-Halite
  • The Beamlet laser tested the design and techniques that would be used on NIF.
  • Bill Richardson began a review process that brought NIF construction back under control.
  • The National Ignition Facility, located at [[Lawrence Livermore National Laboratory]]
  • T]] gas or D–T ice. The capsule is held in the [[hohlraum]] using thin plastic webbing.
  • IR]] power. The conversion of x-ray heat to energy in the fuel loses another 90% – of the 1.9 MJ of laser light, only about 10 kJ ends up in the fuel itself.
  • Laser Bay 2 was commissioned in July 2007.
  • NIF's basic layout. The laser pulse is generated in the room just right of center, and is sent into the beamlines (blue) on either side. After several passes through the beamlines the light is sent into the "switchyard" (red) where it is aimed into the target chamber (silver).
  • Plot of NIF results from 2011 to 2021 shows the dramatic impact of adding a burning plasma to the fusion energy created
  • The NIF target chamber was so large it had to be built in sections.
  • Annie Kritcher]] speaks at the December 13, 2022 [[press conference]] announcing breakeven ignition.
  • A December 13, 2022 video announcement of the first controlled fusion experiment in history to achieve fusion ignition, via the YouTube page of the Lawrence Livermore National Laboratory
  • ignition]] experiment is mounted in the [[cryogenic]] target positioning system, or cryoTARPOS. The two triangle-shaped arms form a shroud around the cold target to protect it until they open five seconds before a shot.
  • Mockup of the gold-plated [[hohlraum]] designed for the NIF
  • United States uses at any instant in time]].
  • Technician works on target positioner inside National Ignition Facility (NIF) target chamber.

halite      
n. halite (mineraal)

Определение

rock salt
¦ noun common salt occurring naturally as a mineral.

Википедия

National Ignition Facility

The National Ignition Facility (NIF) is a laser-based inertial confinement fusion (ICF) research device, located at Lawrence Livermore National Laboratory in Livermore, California, United States. NIF's mission is to achieve fusion ignition with high energy gain. It achieved the first scientific breakeven controlled fusion experiment on December 5, 2022, with an energy gain factor of 1.5. It supports nuclear weapon maintenance and design by studying the behavior of matter under the conditions found within nuclear explosions.

NIF is the largest and most powerful ICF device built to date. The basic ICF concept is to squeeze a small amount of fuel to reach pressure and temperature necessary for fusion. NIF hosts the world's most energetic laser. The laser heats the outer layer of a small sphere. The energy is so intense that it causes the sphere to implode, squeezing the fuel inside. The implosion reaches a peak speed of 350 km/s (0.35 mm/ns), raising the fuel density from about that of water to about 100 times that of lead. The delivery of energy and the adiabatic process during implosion raises the temperature of the fuel to hundreds of millions of degrees. At these temperatures, fusion processes occur in the tiny interval before the fuel explodes outward.

Construction on the NIF began in 1997. NIF was completed five years behind schedule and cost almost four times its original budget. Construction was certified complete on March 31, 2009, by the U.S. Department of Energy. The first large-scale experiments were performed in June 2009 and the first "integrated ignition experiments" (which tested the laser's power) were declared completed in October 2010.

From 2009 to 2012 experiments were conducted under the National Ignition Campaign, with the goal of reaching ignition just after the laser reached full power, some time in the second half of 2012. The campaign officially ended in September 2012, at about 110 the conditions needed for ignition. Thereafter NIF has been used primarily for materials science and weapons research. In 2021, after improvements in fuel target design, NIF produced 70% of the energy of the laser, beating the record set in 1997 by the JET reactor at 67% and achieving a burning plasma. On December 5, 2022, after further technical improvements, NIF reached "ignition", or scientific breakeven, for the first time, achieving a 154% energy yield.