Paper
21 May 2007 Terahertz metamaterials for active, tunable, and dynamic devices
Nathan I. Landy, Hou-Tong Chen, John F. O'Hara, Joshua M. O. Zide, Arthur C. Gossard, Clark Highstrete, Mark Lee, Antoinette J. Taylor, Richard D. Averitt, Willie J. Padilla
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Abstract
Tunable electromagnetic metamaterials can be designed through the incorporation of semiconducting materials. We present theory, simulation, and experimental results of metamaterials operating at terahertz frequencies. Specific emphasis is placed on the demonstration of external control of planar arrays of metamaterials patterned on semiconducting substrates with terahertz time domain spectroscopy used to characterize device performance. Dynamical control is achieved via photoexcitation of free carriers in the substrate. Active control is achieved by creating a Schottkey diode, which enables modulation of THz Transmission by 50 percent, an order of magnitude improvement over existing devices. Because of the universality of metamaterial response over many decades of frequency, these results have implications for other regions of the electromagnetic spectrum and will undoubtedly play a key role in future demonstrations of novel high-performance devices.
© (2007) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Nathan I. Landy, Hou-Tong Chen, John F. O'Hara, Joshua M. O. Zide, Arthur C. Gossard, Clark Highstrete, Mark Lee, Antoinette J. Taylor, Richard D. Averitt, and Willie J. Padilla "Terahertz metamaterials for active, tunable, and dynamic devices", Proc. SPIE 6581, Metamaterials II, 65810P (21 May 2007); https://doi.org/10.1117/12.724394
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Cited by 2 scholarly publications.
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KEYWORDS
Metamaterials

Terahertz radiation

Dielectrics

Control systems

Electromagnetism

Semiconductors

Terahertz spectroscopy

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