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太赫兹混频器噪声系数测量

陶星宇 刘文杰 孙粤辉 秦菲菲 宋青娥 赵泽宇 刘丽娟 陈天香 王云才

中国光学(中英文)2024,Vol.17Issue(4):943-949,7.
中国光学(中英文)2024,Vol.17Issue(4):943-949,7.DOI:10.37188/CO.2023-0193

太赫兹混频器噪声系数测量

Noise figure measurement of terahertz mixer

陶星宇 1刘文杰 2孙粤辉 2秦菲菲 2宋青娥 3赵泽宇 1刘丽娟 1陈天香 1王云才2

作者信息

  • 1. 广东工业大学信息工程学院先进光子技术研究院,广东广州 510006
  • 2. 广东工业大学信息工程学院先进光子技术研究院,广东广州 510006||广东工业大学通感融合光子技术教育部重点实验室,广东广州 510006||广东工业大学广东省信息光子技术重点实验室,广东广州 510006
  • 3. 电子测试技术重点实验室,山东青岛 266555
  • 折叠

摘要

Abstract

Noise Figure(NF)is an important parameter in evaluating the performance of transmitting a sig-nal from a high-frequency electronic device.As the operating frequency increases,the NF of high-frequency electronic devices usually increases,and the Excess Noise Ratio(ENR)of existing noise sources cannot meet the associated measurement requirements.Therefore,to meet the measurement requirements for the NF of high-frequency electronic devices,we propose combining three incoherent optical beams into an unitraveling carrier photodiode(UTC-PD)based on incoherent optical mixing technology.A tunable terahertz(THz)photonics noise source with a high ENR in the 220-325 GHz frequency range is developed.The ENR can be tuned up to 45 dB.By using the Y-factor method,the proposed THz photonics noise source is applied to measure a THz mixer with large NF and negative conversion gain.The measured NF of the THz mixer ranges from 16 to 32 dB,the conversion gain is about-13 dB,and the uncertainty is 0.43 dB.The tunable THz photonics noise source with high ENR can meet the measurement requirements of THz electronic devices with high NF.It will play an important role in the measurement of NF of THz electronic devices and in guiding further optimization.

关键词

噪声系数/噪声源/太赫兹混频器/光混频/Y因子法

Key words

noise figure/noise source/terahertz mixer/optical mixing/Y-factor method

分类

电子信息工程

引用本文复制引用

陶星宇,刘文杰,孙粤辉,秦菲菲,宋青娥,赵泽宇,刘丽娟,陈天香,王云才..太赫兹混频器噪声系数测量[J].中国光学(中英文),2024,17(4):943-949,7.

基金项目

国家自然科学基金(No.61927811)Supported by the National Natural Science Foundation of China(No.61927811) (No.61927811)

中国光学(中英文)

OA北大核心CSTPCD

2095-1531

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