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[논문 리뷰] An optical metamixer

Sheng Liu, Polina P. Vabishchevich|arXiv (Cornell University)|2017. 10. 31.
Advanced Fiber Laser Technologies참고 문헌 40인용 수 91
한 줄 요약

이 논문은 GaAs 기반 유전체 메타표면을 이용한 광 주파수 믹서를 시연하여 두 개의 펨토초 NIR 펄스에서 여러 비선형 과정을 이용해 동시에 eleven new frequencies를 생성합니다.

ABSTRACT

A frequency mixer is a nonlinear device that combines electromagnetic waves to create waves at new frequencies. Mixers are ubiquitous components in modern radio-frequency technology and are widely used in microwave signal processing. The development of versatile frequency mixers for optical frequencies remains challenging: such devices generally rely on weak nonlinear optical processes and, thus, must satisfy phase matching conditions. In this work, we utilize a GaAs-based dielectric metasurface to demonstrate an optical frequency mixer that concurrently generates eleven new frequencies spanning the ultraviolet to near-infrared (NIR) spectral range. Our approach combines strong intrinsic material nonlinearities, enhanced electromagnetic fields, and relaxed phase-matching requirements, to allow seven different nonlinear optical processes to occur simultaneously. Specifically, when pumped by two femtosecond NIR pulses, we observe second-, third- and fourth-harmonic generation, sum-frequency generation, two-photon absorption induced photoluminescence, four-wave mixing, and six-wave mixing. Such ultracompact optical mixers may enable a plethora of applications in biology, chemistry, sensing, communications and quantum optics.

연구 동기 및 목표

  • Demonstrate a compact optical frequency mixer at optical frequencies using a metasurface.
  • Leverage strong nonlinearities and field enhancement to relax phase-matching constraints.
  • Enable simultaneous occurrence of multiple nonlinear optical processes in a single device.

제안 방법

  • Use a GaAs-based dielectric metasurface as the nonlinear optical medium.
  • Pump the metasurface with two femtosecond near-infrared pulses to drive nonlinear processes.
  • Observe and identify multiple nonlinear effects including second-, third-, and fourth-harmonic generation, sum-frequency generation, two-photon absorption induced photoluminescence, four-wave mixing, and six-wave mixing.

실험 결과

연구 질문

  • RQ1Can a single GaAs metasurface-based device generate multiple new frequencies via various nonlinear processes when pumped by two femtosecond NIR pulses?
  • RQ2What nonlinear processes can be induced concurrently in an optical metamixer and how many distinct new frequencies can be produced?
  • RQ3How do the intrinsic nonlinearities, field enhancements, and relaxed phase-matching requirements contribute to multi-process frequency generation in a compact structure?

주요 결과

  • The metasurface concurrently supports seven different nonlinear optical processes.
  • Eleven new frequencies spanning ultraviolet to near-infrared are generated.
  • The setup uses strong intrinsic material nonlinearities and enhanced fields to relax phase matching, enabling ultracompact optical mixing.

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