Integrated Micro-Ring Photonics: Principles and Applications as Slow Light Devices, Soliton Generation and Optical Transmission
暫譯: 整合微环光子学:慢光裝置、孤子生成與光學傳輸的原理與應用

Iraj Sadegh Amiri, Abdolkarim Afroozeh, Harith Ahmad

  • 出版商: CRC
  • 出版日期: 2016-12-05
  • 售價: $5,760
  • 貴賓價: 9.5$5,472
  • 語言: 英文
  • 頁數: 182
  • 裝訂: Hardcover
  • ISBN: 1138027839
  • ISBN-13: 9781138027831
  • 相關分類: 光電子學 Photonics
  • 海外代購書籍(需單獨結帳)

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商品描述

Micro-ring resonators (MRRs) are employed to generate signals used for optical communication applications, where they can be integrated in a single system. These structures are ideal candidates for very large-scale integrated (VLSI) photonic circuits, since they provide a wide range of optical signal processing functions while being ultra-compact. Soliton pulses have sufficient stability for preservation of their shape and velocity. Technological progress in fields such as tunable narrow band laser systems, multiple transmission, and MRR systems constitute a base for the development of new transmission techniques. Controlling the speed of a light signal has many potential applications in fiber optic communication and quantum computing. The slow light effect has many important applications and is a key technology for all optical networks such as optical signal processing. Generation of slow light in MRRs is based on the nonlinear optical fibers. Slow light can be generated within the micro-ring devices, which will be able to be used with the mobile telephone. Therefore, the message can be kept encrypted via quantum cryptography. Thus perfect security in a mobile telephone network is plausible. This research study involves both numerical experiments and theoretical work based on MRRs for secured communication.

商品描述(中文翻譯)

微环谐振腔(Micro-ring resonators, MRRs)被用来生成用于光通信应用的信号,且可以集成在单一系统中。这些结构是非常大规模集成(Very Large Scale Integration, VLSI)光子电路的理想候选者,因為它們提供了廣泛的光信號處理功能,同時又極為緊湊。孤子脈衝具有足夠的穩定性以保持其形狀和速度。在可調窄帶激光系統、多重傳輸和MRR系統等領域的技術進步,為新傳輸技術的發展奠定了基礎。控制光信號的速度在光纖通信和量子計算中具有許多潛在應用。慢光效應有許多重要應用,是所有光學網絡(如光信號處理)的關鍵技術。MRR中慢光的生成基於非線性光纖。慢光可以在微环设备中生成,這將能夠與移動電話一起使用。因此,信息可以通過量子密碼學保持加密。因此,在移動電話網絡中實現完美的安全性是可行的。本研究涉及基於MRR的安全通信的數值實驗和理論工作。