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Synthesis of super-dense phase of aluminum under extreme pressure and temperature conditions created by femtosecond laser pulses in sapphire

机译:飞秒蓝宝石激光脉冲在极端压力和温度条件下合成铝的超密相

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摘要

We describe synthesis of a new super-dense phase of aluminum under extreme pressure and temperature conditions created by laser-induced microexplosions in sapphire. Micro explosions in sub-micrometer sized regions of sapphire were induced by tightly-focused femtosecond laser pulses with a temporal length of ~ 100 fs and an energy of ~ 100 nJ. Fast, explosive expansion of photogenerated high-density plasma created strong heating and pressure transients with peak temperature and pressure of ~ 10~5 K and 10 TPa, respectively. Partial decomposition of sapphire in the shock-compressed sapphire led to formation of nanocrystalline bcc-Al phase, which is different from ambient fcc-Al phase, and was permanently preserved by fast quenching. The existence of super-dense bcc-Al phase was confirmed using X-ray diffraction technique. This is the first observation of bcc-Al phase, which so far has been only predicted theoretically, and a demonstration that laser-induced micro explosions technique enables simple, safe and cost-efficient access to extreme pressures and temperatures without the tediousness typical to traditional techniques that use diamond anvil cells, gas guns, explosives, or megajoule-class lasers.
机译:我们描述了在蓝宝石中激光诱导的微爆炸产生的极端压力和温度条件下,铝的新超密相的合成。在时间长度约为100 fs,能量约为100 nJ的飞秒紧紧聚焦的飞秒激光脉冲的作用下,在亚微米大小的蓝宝石区域引发了微爆炸。光生高密度等离子体的快速爆炸性膨胀产生强烈的加热和压力瞬变,峰值温度和压力分别为〜10〜5 K和10 TPa。蓝宝石在冲击压缩蓝宝石中的部分分解导致形成纳米晶bcc-Al相,与周围的fcc-Al相不同,并通过快速淬灭永久保存。使用X射线衍射技术确认了超密bcc-Al相的存在。这是迄今为止对bcc-Al相的首次观察,迄今为止仅在理论上进行了预测,并且证明了激光诱导的微爆炸技术能够简单,安全且经济高效地获得极端压力和温度,而没有传统方法通常所需要的乏味使用钻石砧室,气枪,炸药或兆焦级激光的技术。

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