Concurrent performance and security enhancement of ultrahigh-order DSM signals via null subcarriers

Author:

Zhao Jianye1ORCID,Liu Bo23,Ren Jianxin2,Mao Yaya2,Liu Haojun2,Zhong Qing2,Wu Xiangyu2,Chen Shuaidong2,Li Ying2,Song Xiumin2,Zhao Lilong2

Affiliation:

1. Sun Yat-sen University

2. Nanjing University of Information Science and Technology

3. Beijing University of Posts and Telecommunications

Abstract

In this paper, we propose leveraging null subcarriers in discrete multi-tone modulation (DMT) to process the DMT signal in both time and frequency domains. Additionally, we employ discrete memory enhanced chaos (DMEC) to scramble the signal in the frequency domain, thereby achieving physical layer signal encryption while ensuring a more uniform power distribution in the time-domain waveform. In our experimental demonstration, we achieved high-security transmission of a DSM-based 65536-QAM signal at a data rate of 16.01 Gb/s over a 25 km single-mode fiber (SMF) in an intensity-modulation direct-detection (IMDD) system. Additionally, in the transmission experiments for 13684-QAM and 65536-QAM signals, the proposed method demonstrated a receiver sensitivity gain of over 0.5 dB compared to the traditional DSM-based ultrahigh-order transmission.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Jiangsu Provincial Key Research and Development Program

Publisher

Optica Publishing Group

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