首页> 外文会议>International Conference on Atomic Processes in Plasmas >The use of lasers for achieving extreme conditions of matter, and fusion
【24h】

The use of lasers for achieving extreme conditions of matter, and fusion

机译:使用激光来实现极端物质条件和融合

获取原文
获取外文期刊封面目录资料

摘要

Since the early'70s AWE has focussed on indirect drive as a means of accessing high energy density regimes. We give a brief historical perspective of this work and the rationale for the construction of the ORION laser. This laser is currently in commissioning and is scheduled to commence experiments in 2012. The ORION laser is configured to provide long pulses (~ 1ns) with a high degree of pulse shape flexibility, together with synchronised short pulse (~1ps) irradiation. The paper describes how this combination should enable pressures in excess of 1 Gb and temperatures of greater than 500 eV to be achieved. The ability to access and diagnose such conditions has applications in many fields; examples are given in planetary science, astrophysics and inertial fusion energy. For these applications we first describe the approach to measuring equation of state and opacity properties in the high energy density regime. Such properties are then incorporated into integrated computer simulation codes and validated against laser experiments, some of which have been conducted recently at the OMEGA laser at the University of Rochester. The paper concludes with a discussion of inertial fusion energy and the new high energy density regimes that this would access, if successful.
机译:由于早期的70年代敬畏以间接驱动器聚焦为访问高能量密度制度的手段。我们简要介绍了这项工作的历史视角,以及对猎户座激光建造的理由。该激光目前正在调试,并计划在2012年开始实验。OriOn激光器配置为提供具有高度脉冲形状柔性的长脉冲(〜1ns),以及同步的短脉冲(〜1ps)照射。本文描述了这种组合应该如何使压力超过1 GB,并且可以实现大于500 eV的温度。访问和诊断此类条件的能力在许多领域具有应用;例子是在行星科学,天体物理学和惯性融合能中给出。对于这些应用,我们首先描述了在高能量密度制度中测量状态和不透明度特性方程的方法。然后将这些性质掺入集成的计算机仿真码中并针对激光实验验证,其中一些是最近在罗切斯特大学的Omega激光器进行的。本文的结论是讨论惯性融合能源和新的高能量密度制度,即如果成功,这将进入。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号