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利用超材料纳米工程技术将块状铝的超导临界温度提高两倍。

Using metamaterial nanoengineering to triple the superconducting critical temperature of bulk aluminum.

作者信息

Smolyaninova Vera N, Zander Kathryn, Gresock Thomas, Jensen Christopher, Prestigiacomo Joseph C, Osofsky M S, Smolyaninov Igor I

机构信息

Department of Physics Astronomy and Geosciences, Towson University, 8000 York Rd., Towson, MD 21252, USA.

Naval Research Laboratory, Washington, DC 20375, USA.

出版信息

Sci Rep. 2015 Nov 2;5:15777. doi: 10.1038/srep15777.

Abstract

Recent experiments have shown the viability of the metamaterial approach to dielectric response engineering for enhancing the transition temperature, Tc, of a superconductor. In this report, we demonstrate the use of Al2O3-coated aluminium nanoparticles to form the recently proposed epsilon near zero (ENZ) core-shell metamaterial superconductor with a Tc that is three times that of pure aluminium. IR reflectivity measurements confirm the predicted metamaterial modification of the dielectric function thus demonstrating the efficacy of the ENZ metamaterial approach to Tc engineering. The developed technology enables efficient nanofabrication of bulk aluminium-based metamaterial superconductors. These results open up numerous new possibilities of considerable Tc increase in other simple superconductors.

摘要

最近的实验表明,超材料方法用于介电响应工程以提高超导体的转变温度Tc具有可行性。在本报告中,我们展示了使用涂覆有Al2O3的铝纳米颗粒来形成最近提出的具有近零介电常数(ENZ)的核壳超材料超导体,其Tc是纯铝的三倍。红外反射率测量证实了介电函数的超材料改性预测,从而证明了ENZ超材料方法对Tc工程的有效性。所开发的技术能够高效地对块状铝基超材料超导体进行纳米制造。这些结果为其他简单超导体中Tc大幅提高开辟了众多新的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1249/4629129/12b788a93ff2/srep15777-f1.jpg

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