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Simultaneous All-Optical or and xor Logic Gates Based on the Bimodal Photonic Cavity Containing a Quantum Dot

机译:基于包含量子点的双峰光子腔的同时全光或异或逻辑门

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摘要

We theoretically present a design for simultaneous all-optical OR and XOR logic gates based on single quantum dot (QD)-bimodal cavity system working in low-photon-number regime. The coupling between the QD and two degenerate cavity modes establishes new indirect excitation paths. Driven by single pulsed laser, both mode transmissions are observed. The delay between the peaks of the transmitted pulses is regarded as the extra transition interval (ETI) in the indirect path. When driven by two orthogonally polarized pulsed lasers with delay same as ETI, the coupling system suppresses the latter mode transmission due to the destructive interference effect. The OR and XOR logic gates based on presence of light are built and the function can be switched between two detectors by simply adjusting the driving pulse sequence. The results show that the proposed logic gates work well within a large range for coupling strength with comparable cavity decay rate. When taking two nonidealities (the detuning between two cavity modes and nonidentical coupling strengths) into consideration, the proposed system shows acceptable tolerances. Moreover, the robustness of the performance on parameters of the driving lasers, including pulse delay, width of pulse, absolute driving strength, and relative driving strength ratio, are demonstrated.
机译:我们从理论上提出了一种基于低量子数的单量子点(QD)-双峰腔系统的同时全光OR和XOR逻辑门设计。 QD与两个简并腔模之间的耦合建立了新的间接激励路径。由单脉冲激光驱动,可以观察到两种模式的传输。发射脉冲的峰值之间的延迟被视为间接路径中的额外过渡间隔(ETI)。当由两个延迟时间与ETI相同的正交偏振脉冲激光器驱动时,耦合系统会由于相消干涉效应而抑制后者的模式传输。建立了基于光的“或”和“或”逻辑门,并且可以通过简单地调整驱动脉冲序列在两个检测器之间切换功能。结果表明,所提出的逻辑门在较大的范围内都能很好地工作,以具有可比的腔衰减率的耦合强度。当考虑两个非理想性(两个腔模之间的失谐和不同的耦合强度)时,建议的系统显示出可接受的公差。此外,证明了驱动激光器的参数性能的鲁棒性,包括脉冲延迟,脉冲宽度,绝对驱动强度和相对驱动强度比。

著录项

  • 来源
    《Photonics Journal, IEEE》 |2016年第6期|1-10|共10页
  • 作者单位

    State Key Laboratory of Information Photonics and Optical Communications, Beijing University of Posts and Telecommunications, Beijing, China;

    State Key Laboratory of Information Photonics and Optical Communications, Beijing University of Posts and Telecommunications, Beijing, China;

    State Key Laboratory of Information Photonics and Optical Communications, Beijing University of Posts and Telecommunications, Beijing, China;

    State Key Laboratory of Information Photonics and Optical Communications, Beijing University of Posts and Telecommunications, Beijing, China;

    Key Lab of Advanced Transducers and Intelligent Control System, Ministry of Education and Shanxi Province, Taiyuan University of Technology, Taiyuan, China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cavity resonators; Couplings; Photonics; Laser modes; Laser excitation; Logic gates; Delays;

    机译:腔谐振器;耦合;光子学;激光模式;激光激励;逻辑门;延迟;
  • 入库时间 2022-08-18 01:22:25

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