4.5 Article

Liquid-Crystal Terahertz Quarter-Wave Plate Using Chemical-Vapor-Deposited Graphene Electrodes

期刊

IEEE PHOTONICS JOURNAL
卷 7, 期 6, 页码 -

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/JPHOT.2015.2504960

关键词

Far infrared or terahertz; phase shift; liquid crystals; nanomaterials; liquid-crystal devices; birefringence; spectroscopy

资金

  1. Ministry of Science Technology of Taiwan [104-2221-E-007-093-MY3]
  2. Academic Top University Program of the Ministry of Education of Taiwan
  3. U.S. Air Force Office of Scientific Research [FA2386-13-1-4086]

向作者/读者索取更多资源

Quarter-wave operation or a phase shift of more than pi/2, which is approximately ten times greater than that reported in previous works using liquid crystals (LCs) and graphene electrodes, was demonstrated. The device is transparent to the terahertz (THz) wave, and the driving voltage required was as low as approximately 2.2 V (rms), which is also unprecedented. Experimental results supported a theoretical formalism adapted for LC cells with THz wavelength-scale thickness. The scattering rate, DC mobility, and carrier mean free path of bilayer graphene were also determined using THz spectroscopic techniques; the parameters were inferior to those of monolayer graphene. This observation can be attributed to the higher density of charged impurities in the bilayer graphene. The device performances of LC phase shifters using monolayer and bilayer graphene as electrodes were essentially identical.

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