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High Energy Density Physics with Terawatt and Petawatt Class Lasers

机译:太瓦与千万瓦级激光的高能量密度物理学

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Summary form only given. The proliferation of 100-TW class ultrashort pulse lasers and the near completion of a number of petawatt class lasers world wide is opening a wide frontier in laser science. The applications of these lasers now span fields ranging from plasma physics to medicine. One of the new frontiers opened by these lasers is in high energy-density (HED) science. A multi-TW laser can create heated matter at temperature up to many keV at density reaching up to and beyond that of a solid. This capability now makes possible detailed study of an array of exotic physics, including Gbar pressures in heated solids, radiative hydrodynamics and nuclear fusion. Lasers with powers of a PW or more will make possible study of even more extreme conditions, including relativistic plasmas. This entire class of hot dense matter is interesting in its own right, but is also of great interest for the applications it opens, such as the ability to make bright sources of energetic particles (protons, neutrons, electrons and gammas) or the possibility to access astrophysically relevant conditions. In this talk I will review some of the recent advances in high energy density science made using high intensity short pulse lasers with illustrative examples from work performed in my group. I will also conjecture on some of the future directions in HED science that can be exploited with the latest petawatt laser technology
机译:摘要表格仅给出。 100-TW类超短脉冲激光器的增殖和近乎完成的一些Petawatt Class Lasers全球范围在激光科学中开辟了广泛的前沿。这些激光器的应用现在跨越从等离子体物理到医学的跨度。这些激光器开放的新前沿的一个是高能量密度(康复)科学。多-W激光可以在温度下产生加热物质,在达到固体上的密度达到许多kev。这种能力现在可以进行详细研究异国情调的物理学,包括加热固体,辐射流体动力学和核聚变中的Gbar压力。具有PW或更高的权力的激光将使甚至更极端的条件研究,包括相对论的等离子体。这类全类热密集物质是有趣的,但对其开放的应用也很兴趣,例如使能量粒子(质子,中子,电子和伽玛)的明亮来源的能力或可能性访问artrophysolyly相关的条件。在这谈话中,我将审查使用高强度短脉冲激光器制成的高能密度科学的一些进展,其中具有来自我的小组的工作的说明性示例。我还将猜测蜂巢科学的一些未来方向,可以利用最新的Petawatt激光技术

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