Skip to main content
construction release_alert
The Scholars Team is working with OIT to resolve some issues with the Scholars search index
cancel

A DoD perspective on left handed negative index materials and potential applications

Publication ,  Journal Article
Browning, VM; Tanielian, MH; Ziolkowski, RW; Engheta, N; Smith, DR
Published in: Materials Research Society Symposium Proceedings
January 1, 2006

In the quest for ever smaller, lighter weight, and conformal components and devices for radar and communication applications, researchers in the RF community have increasingly turned to artificially engineered, composite structures (or "metamaterials") in order to exploit the extraordinary electromagnetic response these materials offer. One particularly promising class of metamaterials that has recently received a great deal of attention are "left-handed" or negative index materials. Because these metamaterials exhibit the unique ability to bend and focus light in ways no other conventional materials can, they hold great potential for enabling a number of innovative lens and antenna structures for a broad range of commercial and DoD relevant applications. Exploring the possible implementation of negative index materials for such applications will require significant enhancements in the properties of existing Negative Index Materials (NIM) (bandwidth, loss, operational frequency, etc.), as well as improved understanding of the physics of their electromagnetic transport properties. For this reason the Defense Advanced Research Project Agency (DARPA) has initiated a program that seeks to further develop and demonstrate NIM for future DoD missions including, but not limited to, the following: 1) lightweight, compact lenses with improved optics; 2) sub wavelength/high resolution imaging across the electromagnetic spectrum; 3) novel approaches to beam steering for radar, RF, and/or optical communications; and 4) novel approaches for integrating optics with semiconductor electronics. A brief overview of the salient properties of NIM will be presented as well as a general discussion of a few of their potential applications. © 2006 Materials Research Society.

Duke Scholars

Published In

Materials Research Society Symposium Proceedings

DOI

ISSN

0272-9172

Publication Date

January 1, 2006

Volume

919

Start / End Page

1 / 11
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Browning, V. M., Tanielian, M. H., Ziolkowski, R. W., Engheta, N., & Smith, D. R. (2006). A DoD perspective on left handed negative index materials and potential applications. Materials Research Society Symposium Proceedings, 919, 1–11. https://doi.org/10.1557/proc-0919-j01-02
Browning, V. M., M. H. Tanielian, R. W. Ziolkowski, N. Engheta, and D. R. Smith. “A DoD perspective on left handed negative index materials and potential applications.” Materials Research Society Symposium Proceedings 919 (January 1, 2006): 1–11. https://doi.org/10.1557/proc-0919-j01-02.
Browning VM, Tanielian MH, Ziolkowski RW, Engheta N, Smith DR. A DoD perspective on left handed negative index materials and potential applications. Materials Research Society Symposium Proceedings. 2006 Jan 1;919:1–11.
Browning, V. M., et al. “A DoD perspective on left handed negative index materials and potential applications.” Materials Research Society Symposium Proceedings, vol. 919, Jan. 2006, pp. 1–11. Scopus, doi:10.1557/proc-0919-j01-02.
Browning VM, Tanielian MH, Ziolkowski RW, Engheta N, Smith DR. A DoD perspective on left handed negative index materials and potential applications. Materials Research Society Symposium Proceedings. 2006 Jan 1;919:1–11.

Published In

Materials Research Society Symposium Proceedings

DOI

ISSN

0272-9172

Publication Date

January 1, 2006

Volume

919

Start / End Page

1 / 11