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High spectro-temporal compression on a nonlinear CMOS-chip

         

摘要

Optical pulses are fundamentally defined by their temporal and spectral properties.The ability to control pulse properties allows practitioners to efficiently leverage them for advanced metrology,high speed optical communications and attosecond science.Here,we report 11×temporal compression of 5.8 ps pulses to 0.55 ps using a low power of 13.3 W.The result is accompanied by a significant increase in the pulse peak power by 9.4×.These results represent the strongest temporal compression demonstrated to date on a complementary metal–oxide–semiconductor(CMOS)chip.In addition,we report the first demonstration of on-chip spectral compression,3.0×spectral compression of 480 fs pulses,importantly while preserving the pulse energy.The strong compression achieved at low powers harnesses advanced on-chip device design,and the strong nonlinear properties of backend-CMOS compatible ultra-silicon-rich nitride,which possesses absence of two-photon absorption and 500×larger nonlinear parameter than in stoichiometric silicon nitride waveguides.The demonstrated work introduces an important new paradigm for spectro-temporal compression of optical pulses toward turn-key,on-chip integrated systems for all-optical pulse control.

著录项

  • 来源
    《光:科学与应用(英文版)》 |2021年第7期|P.1347-1361|共15页
  • 作者单位

    Photonics Devices and System Group SUTD-MIT International Design Center Singapore University of Technology and Design Singapore 487372 Singapore;

    Photonics Devices and System Group SUTD-MIT International Design Center Singapore University of Technology and Design Singapore 487372 Singapore;

    Photonics Devices and System Group SUTD-MIT International Design Center Singapore University of Technology and Design Singapore 487372 Singapore;

    Photonics Devices and System Group SUTD-MIT International Design Center Singapore University of Technology and Design Singapore 487372 Singapore;

    Institute of Microelectronics A*STAR(Agency for Science Technology and Research) 2 Fusionopolis Way #08-02 Innovis Tower Singapore 138634 Singapore;

    Microphotonics Center Massachusetts Institute of Technology 77 Massachusetts Avenue Cambridge MA 02139 USAMaterials Research Laboratory Massachusetts Institute of Technology 77 Massachusetts Avenue Cambridge MA 02139 USA;

    Materials Research Laboratory Massachusetts Institute of Technology 77 Massachusetts Avenue Cambridge MA 02139 USADepartment of Materials Science and Engineering Massachusetts Institute of Technology 77 Massachusetts Avenue Cambridge MA 02139 USA;

    Photonics Devices and System Group SUTD-MIT International Design Center Singapore University of Technology and Design Singapore 487372 SingaporeInstitute of Microelectronics A*STAR(Agency for Science Technology and Research) 2 Fusionopolis Way #08-02 Innovis Tower Singapore 138634 Singapore;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 光电子技术、激光技术;
  • 关键词

    pulse; optical; nonlinear;

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