Time-Delay Signature of Chaotic Vertical-Cavity Surface-Emitting Lasers with Polarization-Rotated Optical Feedback

To quantitatively evaluate the time-delay (TD) signatures of chaotic signals generated by vertical-cavity surface- emitting lasers (VCSELs) with polarization-rotated optical feedback (PROF), we propose four cases of resolution coefficients R based on correlation functions. The resolution coefficient...

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Published inChinese physics letters Vol. 28; no. 1; pp. 98 - 101
Main Authors Xiang, Shui-Ying (水英 项), Pan, Wei (讳潘), Yan, Lian-Shan (连山 闫), Luo, Bin (斌罗), Zou, Xi-Hua (喜华 部), Jiang, Ning (宁江), Wen, Kun-Hua (坤华 温)
Format Journal Article
LanguageEnglish
Published IOP Publishing 2011
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ISSN0256-307X
1741-3540
DOI10.1088/0256-307X/28/1/014203

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Abstract To quantitatively evaluate the time-delay (TD) signatures of chaotic signals generated by vertical-cavity surface- emitting lasers (VCSELs) with polarization-rotated optical feedback (PROF), we propose four cases of resolution coefficients R based on correlation functions. The resolution coefficient characteristics for the x-polarization (XP) mode, g-polarization (YP) mode and the total output are considered. The dependences of R on the feedback strength and feedback delay are discussed and compared carefully. The two-dimensional maps of R show that the TD signatures for the single polarization mode (i.e., XP or YP mode) are much more difficult to retrieve than those for the total output in the entire parameter space. Thus, by using single polarization mode as a chaotic carrier, the TD signatures are extremely difficult to be identified, which contributes a lot in the security-enhanced VCSELs-based chaotic optical communication systems.
AbstractList To quantitatively evaluate the time-delay (TD) signatures of chaotic signals generated by vertical-cavity surface- emitting lasers (VCSELs) with polarization-rotated optical feedback (PROF), we propose four cases of resolution coefficients R based on correlation functions. The resolution coefficient characteristics for the x-polarization (XP) mode, g-polarization (YP) mode and the total output are considered. The dependences of R on the feedback strength and feedback delay are discussed and compared carefully. The two-dimensional maps of R show that the TD signatures for the single polarization mode (i.e., XP or YP mode) are much more difficult to retrieve than those for the total output in the entire parameter space. Thus, by using single polarization mode as a chaotic carrier, the TD signatures are extremely difficult to be identified, which contributes a lot in the security-enhanced VCSELs-based chaotic optical communication systems.
Author XIANG Shui-Ying PAN Wei YAN Lian-Shan LUO Bin ZOU Xi-Hua JIANG Ning WEN Kun-Hua
AuthorAffiliation Center for Information Photonics and Communications, Southwest Jiaotong University, Chengdu 610031
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SubjectTerms VCSEL
偏振旋转
光反馈
光通信系统
垂直腔表面发射激光器
时间延迟
极化系数
混沌信号
Title Time-Delay Signature of Chaotic Vertical-Cavity Surface-Emitting Lasers with Polarization-Rotated Optical Feedback
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