On-Chip Digital Fourier-Transform Spectrometer Using a Thermo-Optical Michelson Grating Interferometer

被引:21
|
作者
Soref, Richard A. [1 ]
De Leonardis, Francesco [2 ]
Passaro, Vittorio M. N. [2 ]
Fainman, Yeshaiahu [3 ]
机构
[1] Univ Massachusetts, Dept Engn, Boston, MA 02125 USA
[2] Politecn Bari, Photon Res Grp, Dept Elect & Informat Engn, I-70125 Bari, Italy
[3] Univ Calif San Diego, Dept Elect & Comp Engn, La Jolla, CA 92093 USA
基金
美国国家科学基金会;
关键词
Bragg grating resonators; microwave photonics; spectrometer; true time delays; WAVE-GUIDE; RESOLUTION;
D O I
10.1109/JLT.2018.2867241
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This theoretical modeling and simulation paper presents designs and projected performance of an on-chip digital Fourier transform spectrometer using a thermo-optical (TO) Michelson grating interferometer operating at similar to 1550 and 2000 nm for silicon-on-insulator and for germanium-on-silicon technological platforms, respectively. The Michelson interferometer arms consist of two unbalanced tunable optical delay lines operating in the reflection mode. They are comprised of a cascade connection of waveguide Bragg grating resonators (WBGRs) separated by a piece of straight waveguide with lengths designed according to the spectrometer resolution requirements. The length of each WBGRis chosen according to the Butterworth filter technique to provide one resonant spectral profile with a bandwidth twice that of the spectrometer bandwidth. A selectable optical path difference (OPD) between the arms is obtained by shifting the notch in the reflectivity spectrum along the wavelength axis by means of a low-power TO heater stripe atop the WBGR, inducing an OPD that depends on the line position of the WBGR affected by TO switching. We examined the device performances in terms of signal recostruction in the radio-frequency (RF) spectrum analysis application at 1 GHz and at 1.5 GHz of spectrometer resolution. The investigation demonstrated that high-quality spectrum reconstruction is obtained for both Lorentzian and arbitrary input signals with a bandwidth up to 40 GHz. We also show that spectrum reconstruction of 100-200 GHz RF band input signals is feasible in the Ge-on-Si chips.
引用
收藏
页码:5160 / 5167
页数:8
相关论文
共 50 条
  • [1] FOURIER-TRANSFORM SPECTROSCOPY USING A MICHELSON INTERFEROMETER
    ALBERGOTTI, JC
    AMERICAN JOURNAL OF PHYSICS, 1972, 40 (08) : 1070 - +
  • [2] The Design of On-chip Digital Fourier Transform Spectrometer
    Yu, Jiarui
    Wang, Weiping
    Cao, Jun
    Guoyu, Heyang
    Hu, Xiaoyan
    SEVENTH ASIA PACIFIC CONFERENCE ON OPTICS MANUFACTURE (APCOM 2021), 2022, 12166
  • [3] A compressive sensing Fourier-transform on-chip Raman spectrometer
    Podmore, Hugh
    Scott, Alan
    Lee, Regina
    PHOTONIC INSTRUMENTATION ENGINEERING V, 2018, 10539
  • [4] FOURIER-TRANSFORM SPECTROSCOPY USING ANY OLD MICHELSON INTERFEROMETER
    LAYTON, RG
    BROWER, JK
    AMERICAN JOURNAL OF PHYSICS, 1975, 43 (02) : 180 - 180
  • [5] On-chip Fourier-transform spectrometer based on spatial heterodyning tuned by thermo-optic effect
    Montesinos-Ballester, Miguel
    Liu, Qiankun
    Vakarin, Vladyslav
    Ramirez, Joan Manel
    Alonso-Ramos, Carlos
    Le Roux, Xavier
    Frigerio, Jacopo
    Ballabio, Andrea
    Talamas, Enrico
    Vivien, Laurent
    Isella, Giovanni
    Marris-Morini, Delphine
    SCIENTIFIC REPORTS, 2019, 9 (1)
  • [6] On-chip Fourier-transform spectrometer based on spatial heterodyning tuned by thermo-optic effect
    Miguel Montesinos-Ballester
    Qiankun Liu
    Vladyslav Vakarin
    Joan Manel Ramirez
    Carlos Alonso-Ramos
    Xavier Le Roux
    Jacopo Frigerio
    Andrea Ballabio
    Enrico Talamas
    Laurent Vivien
    Giovanni Isella
    Delphine Marris-Morini
    Scientific Reports, 9
  • [7] Broadband mid-IR on-chip Fourier-transform Spectrometer
    Montesinos-Ballester, Miguel
    Liu, Qiankun
    Vakarin, Vladyslav
    Ramirez, Joan Manel
    Alonso-Ramos, Carlos
    Le Roux, Xavier
    Frigerio, Jacopo
    Ballabio, Andrea
    Talamas, Enrico
    Vivien, Laurent
    Isella, Giovanni
    Marris-Morini, Delphine
    2019 IEEE 16TH INTERNATIONAL CONFERENCE ON GROUP IV PHOTONICS (GFP 2019), 2019,
  • [8] Demonstration of a compressive-sensing Fourier-transform on-chip spectrometer
    Podmore, Hugh
    Scott, Alan
    Cheben, Pavel
    Velasco, Aitor V.
    Schmid, Jens H.
    Vachon, Martin
    Lee, Regina
    OPTICS LETTERS, 2017, 42 (07) : 1440 - 1443
  • [9] Fourier-transform on-chip Microspectrometers
    Velasco, Aitor V.
    Cheben, Pavel
    Calvo, Maria L.
    Delage, Andre
    Schmid, Jens H.
    Lapointe, Jean
    Janz, Siegfried
    Xu, Dan-Xia
    Vachon, Martin
    Nedeljkovic, Milos
    Khokhar, Ali Z.
    Mashanovich, Goran Z.
    Herrero-Bermello, Alaine
    Corredera, Pedro
    2016 PROGRESS IN ELECTROMAGNETICS RESEARCH SYMPOSIUM (PIERS), 2016, : 60 - 61
  • [10] Cascaded Double-ring enhanced On-chip Fourier-transform Spectrometer
    Shao, Qiongchan
    Li, Mingyu
    He, Jian-Jun
    2018 ASIA COMMUNICATIONS AND PHOTONICS CONFERENCE (ACP), 2018,