首页> 外文会议>2012 Photonics Global Conference. >Novel wireless millimeter-wave to lightwave signal converters by electro-optic crystals suspended to narrow-gap-embedded patch-antennas on low-k dielectric substrates
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Novel wireless millimeter-wave to lightwave signal converters by electro-optic crystals suspended to narrow-gap-embedded patch-antennas on low-k dielectric substrates

机译:新型无线毫米波至光波信号转换器,其电光晶体悬挂在低k介电基板上的窄间隙嵌入式贴片天线中

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摘要

We propose a new wireless millimeter-wave (MMW) to lightwave (LW) signal converter using an electro-optic crystal suspended to narrow-gap-embedded patch-antennas on a low-k dielectric substrate. Wireless MMW signals can be received by the patch-antennas and converted to LW signals by use of the MMW electric field across the narrow-gap for electro-optic (EO) modulation. An aperture area of the patch-antennas is about 4 times larger than that fabricated on a high-k EO crystal only as the substrate. The MMW electric field across the narrow-gap of the proposed device also becomes 10-times stronger than that using the high-k dielectric EO substrate. Therefore, the conversion efficiency enhancement of approximately 20 dB can be obtained using the proposed device. It is compact, passive, and operated with extremely low MMW distortion in high-speed radio-over fiber communication and measurement systems.
机译:我们提出了一种新的无线毫米波(MMW)到光波(LW)信号转换器,该信号转换器使用电光晶体悬挂在低k介电基板上的窄间隙嵌入式贴片天线中。膜片天线可以接收无线MMW信号,并利用跨窄间隙的MMW电场将其转换为LW信号,以进行电光(EO)调制。贴片天线的孔径面积比仅作为衬底的高k EO晶体上的孔径大4倍。与使用高k电介质EO基板相比,所提出装置的窄缝处的MMW电场也要强10倍。因此,使用所提出的装置可以获得大约20dB的转换效率增强。它紧凑,无源,并且在高速光纤无线电通信和测量系统中以极低的MMW失真运行。

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