• Photonics Research
  • Vol. 5, Issue 5, 417 (2017)
Ting Hu1, Bowei Dong1、2, Xianshu Luo1、*, Tsung-Yang Liow1, Junfeng Song1, Chengkuo Lee2, and Guo-Qiang Lo1
Author Affiliations
  • 1Institute of Microelectronics, Agency for Science, Technology and Research (A*STAR), 2 Fusionopolis Way, #08-02, Innovis, Singapore 138634, Singapore
  • 2Department of Electrical & Computer Engineering, National University of Singapore, 4 Engineering Drive 3, Singapore 117583, Singapore
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    DOI: 10.1364/PRJ.5.000417 Cite this Article Set citation alerts
    Ting Hu, Bowei Dong, Xianshu Luo, Tsung-Yang Liow, Junfeng Song, Chengkuo Lee, Guo-Qiang Lo. Silicon photonic platforms for mid-infrared applications [Invited][J]. Photonics Research, 2017, 5(5): 417 Copy Citation Text show less

    Abstract

    Silicon photonic integrated circuits for telecommunication and data centers have been well studied in the past decade, and now most related efforts have been progressing toward commercialization. Scaling up the silicon-on-insulator (SOI)-based device dimensions in order to extend the operation wavelength to the short mid-infrared (MIR) range (2–4 μm) is attracting research interest, owing to the host of potential applications in lab-on-chip sensors, free space communications, and much more. Other material systems and technology platforms, including silicon-on-silicon nitride, germanium-on-silicon, germanium-on-SOI, germanium-on-silicon nitride, sapphire-on-silicon, SiGe alloy-on-silicon, and aluminum nitride-on-insulator are explored as well in order to realize low-loss waveguide devices for different MIR wavelengths. In this paper, we will comprehensively review silicon photonics for MIR applications, with regard to the state-of-the-art achievements from various device demonstrations in different material platforms by various groups. We will then introduce in detail of our institute’s research and development efforts on the MIR photonic platforms as one case study. Meanwhile, we will discuss the integration schemes along with remaining challenges in devices (e.g., light source) and integration. A few application-oriented examples will be examined to illustrate the issues needing a critical solution toward the final production path (e.g., gas sensors). Finally, we will provide our assessment of the outlook of potential future research topics and engineering challenges along with opportunities.
    TI=t2=cos2(π2LcLπ+Ø0),(1)

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    XI=K2=sin2(π2LcLπ+Ø0),(2)

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    Y=arctan(X/T)=(π2Lπ)Lc+Ø0.(3)

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    T=exp(αgCΓL),(4)

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    1Q=1Qi+1Qc+1Qg=1Qcav+1Qg,(5)

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    Qg=ωτp=2πλΓCαg,(6)

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    Leff=cτp=cQω=λQ2π,(7)

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    Ting Hu, Bowei Dong, Xianshu Luo, Tsung-Yang Liow, Junfeng Song, Chengkuo Lee, Guo-Qiang Lo. Silicon photonic platforms for mid-infrared applications [Invited][J]. Photonics Research, 2017, 5(5): 417
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