Experimental demonstration of superconducting critical temperature increase in electromagnetic metamaterials

Author:

Smolyaninova Vera N.,Yost Bradley,Zander Kathryn,Osofsky M. S.,Kim Heungsoo,Saha Shanta,Greene R. L.,Smolyaninov Igor I.

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference18 articles.

1. Pendry, J. B., Schurig, D. & and Smith, D. R. Controlling electromagnetic fields. Science 312, 1780 (2006).

2. Guenneau, S. B., Movchan, A., Pétursson, G. & Ramakrishna, S. A. Acoustic metamaterials for sound focusing and confinement. New J. of Phys. 9, 399 (2007).

3. Page, J. Metamaterials: Neither solid nor liquid. Nature Materials 10, 565 (2011).

4. Smolyaninov, I. I. & Narimanov, E. E. Radiative cooling of optoelectronic devices using hyperbolic metamaterials. US Patent Application Publication # US 20130340990 (12/26/2013).

5. Smolyaninov, I. I. & Smolyaninova, V. N. Is there a metamaterial route to high temperature superconductivity? arXiv:1311.3277 [physics.optics].

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