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Experimental evidence of new tetragonal polymorphs of silicon formed through ultrafast laser-induced confined microexplosion

机译:通过超快激光诱导的密闭微爆炸形成新的硅四方多晶型物的实验证据

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摘要

Ordinary materials can transform into novel phases at extraordinary high pressure and temperature. The recently developed method of ultrashort laser-induced confined microexplosions initiates a non-equilibrium disordered plasma state. Ultra-high quenching rates overcome kinetic barriers to the formation of new metastable phases, which are preserved in the surrounding pristine crystal for subsequent exploitation. Here we demonstrate that confined microexplosions in silicon produce several metastable end phases. Comparison with an ab initio random structure search reveals six energetically competitive potential phases, four tetragonal and two monoclinic structures. We show the presence of bt8 and st12, which have been predicted theoretically previously, but have not been observed in nature or in laboratory experiments. In addition, the presence of the as yet unidentified silicon phase, Si-VIII and two of our other predicted tetragonal phases are highly likely within laser-affected zones. These findings may pave the way for new materials with novel and exotic properties.
机译:普通材料可以在极高的压力和温度下转变成新颖的相。最近开发的超短激光诱导的封闭微爆炸方法引发了非平衡无序等离子体状态。超高的淬灭速率克服了形成新的亚稳相的动力学障碍,该相被保存在周围的原始晶体中以备后用。在这里,我们证明了硅中的局限性微爆炸会产生几个亚稳态的最终相。与从头算随机结构搜索的比较显示出六个具有能量竞争潜力的相,四个四角形和两个单斜结构。我们显示了bt8和st12的存在,它们在理论上已经被预先预测,但是在自然界或实验室实验中尚未观察到。此外,在激光影响区域内极有可能存在尚未确定的硅相,Si-VIII和我们预测的其他两个四方相。这些发现可能为具有新颖和奇特特性的新材料铺平道路。

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