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基于TiN/TiC异质结的新型光调制器光子器件

Novel Optical Modulator Photonic Device Based on TiN/TiC Heterojunction.

作者信息

Zhou Zexin, Yan Miao, Liang Hu, Yu Jie, Liu Qidong, Song Yufeng, Ji Jianhua, Wang Zhenhong, Wang Ke

机构信息

College of Electronics and Information Engineering, Shenzhen University, Shenzhen 518060, China.

Tianjin Navigation Instruments Research Institute, Tianjin 300131, China.

出版信息

Sensors (Basel). 2024 Aug 11;24(16):5190. doi: 10.3390/s24165190.

Abstract

Due to the ability of optical modulators to achieve rapid modulation of optical signals, meeting the demands of high-speed data transmission, modulators based on different novel nanomaterials have become one of the research hotspots over the past dacade. Recently, TiN/TiC heterojunction exhibits highly efficient thermo-optic performance and extremely strong stability. Therefore, we have demonstrated an all-optical modulator based on the principle of Michelson interference and the thermo-optic effect in this paper. The modulator employs a TiN/TiC heterojunction-coated microfiber (THM) and further demonstrates its ability to generate phase shifts through an ASE light source. The modulator, with a phase shift slope of 0.025π/mW, can also convert the phase shifts of signal light into amplitude modulation through Michelson interference. The fixed signal light wavelength is 1552.09 nm, and the modulation depth is stable at about 26.4 dB within a wavelength detuning range of -10 to 6 nm; The waveforms of signal light at modulation rates of 500 Hz, 1000 Hz, 2000 Hz, and 3000 Hz were tested, and a 3 dB modulation bandwidth of 2 kHz was measured. The all-optical modulator based on THM has the advantages of high efficiency and stability and has broad application prospects in the fields of all-optical signal processing and high-speed optical communication.

摘要

由于光调制器能够实现光信号的快速调制,满足高速数据传输的需求,基于不同新型纳米材料的调制器在过去十年中已成为研究热点之一。最近,TiN/TiC异质结表现出高效的热光性能和极强的稳定性。因此,本文展示了一种基于迈克尔逊干涉原理和热光效应的全光调制器。该调制器采用了涂覆有TiN/TiC异质结的微光纤(THM),并进一步展示了其通过ASE光源产生相移的能力。该调制器的相移斜率为0.025π/mW,还可通过迈克尔逊干涉将信号光的相移转换为幅度调制。固定信号光波长为1552.09 nm,在-10至6 nm的波长失谐范围内,调制深度稳定在约26.4 dB;测试了500 Hz、1000 Hz、2000 Hz和3000 Hz调制速率下信号光的波形,测得3 dB调制带宽为2 kHz。基于THM的全光调制器具有高效、稳定的优点,在全光信号处理和高速光通信领域具有广阔的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c99c/11359643/347159ed8a1b/sensors-24-05190-g001.jpg

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