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Extreme Energy Density Confined Inside a Transparent Crystal: Status and Perspectives of Solid-Plasma-Solid Transformations

机译:极限能量密度限制在透明晶体内:固态-等离子-固态转换的状态和观点

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摘要

It was demonstrated during the past decade that an ultra-short intense laser pulse tightly-focused deep inside a transparent dielectric generates an energy density in excess of several MJ/cm3. Such an energy concentration with extremely high heating and fast quenching rates leads to unusual solid-plasma-solid transformation paths, overcoming kinetic barriers to the formation of previously unknown high-pressure material phases, which are preserved in the surrounding pristine crystal. These results were obtained with a pulse of a Gaussian shape in space and in time. Recently, it has been shown that the Bessel-shaped pulse could transform a much larger amount of material and allegedly create even higher energy density than what was achieved with the Gaussian beam (GB) pulses. Here, we present a succinct review of previous results and discuss the possible routes for achieving higher energy density employing the Bessel beam (BB) pulses and take advantage of their unique properties.
机译:在过去的十年中,事实证明,在透明电介质内部紧密聚焦的超短强度强激光脉冲产生的能量密度超过数个MJ / cm 3 。具有极高的加热和快速淬灭速率的这种能量集中导致异常的固体-等离子体-固体转变路径,克服了形成先前未知的高压材料相的动力学障碍,所述材料相保留在周围的原始晶体中。这些结果是通过在空间和时间上呈高斯形状的脉冲获得的。最近,研究表明,与高斯光束(GB)脉冲相比,贝塞尔形脉冲可以转换大量的材料,并据称产生更高的能量密度。在这里,我们简要总结了以前的结果,并讨论了使用贝塞尔光束(BB)脉冲获得更高能量密度的可能途径,并利用了它们的独特性能。

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