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High-transmittance 2π electrically tunable terahertz phase shifter with cmos-compatible driving voltage enabled by liquid crystals
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High-transmittance 2π electrically tunable terahertz phase shifter with cmos-compatible driving voltage enabled by liquid crystals

Chan-Shan Yang, Chun Kuo, Po-Han Chen, Wei-Ta Wu, Ru-Pin Pan, Peichen YuCi-Ling Pan
Applied Sciences (Switzerland), 卷.9(2), 271
01/2019

摘要

Antireflection coatings Birefringence Far infrared Liquid crystals Nanomaterials Phase shift Terahertz Transparent conductive coatings Materials Science (all) Instrumentation Engineering (all) Process Chemistry and Technology Computer Science Applications Fluid Flow and Transfer Processes
We have investigated tunable terahertz (THz) phase shifters that are based on a sandwiched liquid crystal (LC) cell with indium-tin-oxide (ITO) nanowhiskers (NWhs) as transparent electrodes. More than 360° of phase shift at 1.0 THz was achieved at a driving voltage as low as ~2.6 V (rms). This is approximately 40 times smaller than that reported in previous works using an electrically tuned LC device. Significance of the NWhs in reducing the required voltage is demonstrated. Overall transmittance of the device is as high as 30%, which is accountable by absorption losses of ITO NWhs, quartz substrate and LC. Experimental results are in good agreement with a theoretical formulism while taking into account super-thick LC cells (~1 mm) and pretilt angles. We also propose and demonstrate a novel THz technique for measuring pretilt angles of liquid crystals.

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https://doi.org/10.3390/app9020271檢視
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