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硼中的超导性。

Superconductivity in boron.

作者信息

Eremets M I, Struzhkin V V, Mao H, Hemley R J

机构信息

Geophysical Laboratory and Center for High Pressure Research, Carnegie Institution of Washington, 5251 Broad Branch Road, NW, Washington, DC 20015, USA.

出版信息

Science. 2001 Jul 13;293(5528):272-4. doi: 10.1126/science.1062286.

Abstract

Metals formed from light elements are predicted to exhibit intriguing states of electronic order. Of these materials, those containing boron are of considerable current interest because of their relatively high superconducting temperatures. We have investigated elemental boron to very high pressure using diamond anvil cell electrical conductivity techniques. We find that boron transforms from a nonmetal to a superconductor at about 160 gigapascals (GPa). The critical temperature of the transition increases from 6 kelvin (K) at 175 GPa to 11.2 K at 250 GPa, giving a positive pressure derivative of 0.05 K/GPa. Although the observed metallization pressure is compatible with the predictions of first-principles calculations, superconductivity in boron remains to be explored theoretically. The present results constitute a record pressure for both electrical conductivity studies and investigations of superconductivity in dense matter.

摘要

由轻元素形成的金属预计会呈现出有趣的电子有序状态。在这些材料中,含硼材料因其相对较高的超导温度而备受当前关注。我们使用金刚石对顶砧电导率技术对元素硼进行了极高压力下的研究。我们发现硼在约160吉帕斯卡(GPa)时从非金属转变为超导体。转变的临界温度从175 GPa时的6开尔文(K)增加到250 GPa时的11.2 K,压力导数为0.05 K/GPa。尽管观测到的金属化压力与第一性原理计算的预测相符,但硼中的超导性仍有待从理论上进行探索。目前的结果在电导率研究和致密物质中超导性研究方面都创下了压力记录。

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