Miniature Surface Plasmon Polariton Amplitude Modulator by Beat Frequency and Polarization Control

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Abstract

The miniaturization of modulators keeps pace for the compact devices in optical applications. Here, we present a miniature surface plasmon polariton amplitude modulator (SPPAM) by directing and interfering surface plasmon polaritons on a nanofabricated chip. Our results show that this SPPAM enables two kinds of modulations. The first kind of modulation is controlled by encoding angular-frequency difference from a Zeeman laser, with a beat frequency of 1.66 MHz; the second of modulation is validated by periodically varying the polarization states from a polarization generator, with rotation frequencies of 0.5-10 k Hz. In addition, the normalized extinction ratio of our plasmonic structure reaches 100. Such miniaturized beat-frequency and polarization-controlled amplitude modulators open an avenue for the exploration of ultrasensitive nanosensors, nanocircuits, and other integrated nanophotonic devices.

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Chang, C. W., Lin, C. E., Yu, C. J., Yeh, T. T., & Yen, T. J. (2016). Miniature Surface Plasmon Polariton Amplitude Modulator by Beat Frequency and Polarization Control. Scientific Reports, 6. https://doi.org/10.1038/srep32098

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