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Excitation and Active Control of Charge Density Waves at Degenerately Doped PN++ Junctions

ORAL

Abstract

We present a semiconductor-based plasmonic electro-optic modulator based on excitation and active control of surface plasmon polaritons (SPPs) at the interface of degenerately doped In0.53Ga0.47As pn++ junctions. Set of devices, which we refer to as a surface plasmon polariton diode (SPPD), are fabricated and characterized electrically and optically. Optical characterization predicts far-field voltage aided reflectivity modulation for mid-IR wavelengths. Numerical device characterizations using self-consistent electro-optic Multiphysics model have been performed to confirm the experimental findings predicting data rates up to 1Gbits/s and 3dB bandwidth as high as 2GHz. Our findings also show that decreasing the device dimensions can potentially lead to data rates more than 50Gbits/s, thus potentially providing a pathway toward fast all-semiconductor based plasmotronic devices.

Publication: 1. Dong Z, Vinnakota RK, Briggs AF, Nordin L, Bank SR, Genov DA, Wasserman D (2019) Electrical modulation of degenerate semiconductor plasmonic interfaces. Journal of Applied Physics 126:043101. https://doi.org/10.1063/1.5108905 <br>2. R. K. Vinnakota, Z. Dong, A. F. Briggs, S. R. Bank, D. Wasserman, D. A. Genov, Plasmonic electro-optic modulator based on <br> degenerate semiconductor interfaces, Nanophotonics 9 (5) (2020) 1105–1113. https://doi.org/10.1515/nanoph-2019-0518 <br>3. R. K. Vinnakota, Z. Dong, A. F. Briggs, S. R. Bank, D. Wasserman, D. A. Genov, Response Times of Degenerately Doped Semiconductor Based Plasmonic Modulator, 22 August 2022, PREPRINT (Version 1) available at Research Square [https://doi.org/10.21203/rs.3.rs-1933673/v1]

Presenters

  • Raj K Vinnakota

    Troy University

Authors

  • Raj K Vinnakota

    Troy University

  • Zuoming Dong

    University of Texas Austin

  • Andrew Briggs

    University of Texas Austin

  • Seth Bank

    University of Texas Austin

  • Daniel Wassertman

    University of Texas Austin

  • Dentcho Genov

    Louisiana Tech University