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基于VMD自适应模态重组的光学下变频信号分离方法
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作者 孙世腾 谢树果 +1 位作者 宋雨杭 濮晗春 《强激光与粒子束》 CAS CSCD 北大核心 2024年第4期145-152,共8页
光学下变频技术可将宽频带内全部电磁信号同时下变频到低频区间进行接收,是一种新型宽频带电磁环境快速接收技术。但是,获取的光学下变频信号中包含源个数未知、带宽不同的多种信号,现有信号分离方法需要获知源信号的个数,且无法同时分... 光学下变频技术可将宽频带内全部电磁信号同时下变频到低频区间进行接收,是一种新型宽频带电磁环境快速接收技术。但是,获取的光学下变频信号中包含源个数未知、带宽不同的多种信号,现有信号分离方法需要获知源信号的个数,且无法同时分离窄带信号和宽带信号。为实现对光学下变频信号的自动分离,提出了一种基于变分模态分解(VMD)自适应模态重组的光学下变频信号分离方法。通过频谱分割因子和频谱包络检测,对光学下变频信号的VMD过分解模态进行自动重组和信号重组模态提取,实现光学下变频信号分离。对于包含普通脉冲信号、宽带码分多址(WCDMA)信号和线性调频脉冲信号的光学下变频信号,可自动实现对三种信号的分离,且与原信号的相似系数均高于0.97。实验结果表明,所提及方法在分离光学下变频信号时无需获知源信号的个数,并能同时分离具有不同带宽的多种源信号。 展开更多
关键词 变分模态分解 光学下变频 单通道信号分离 频谱分割因子 频谱包络检测
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Magnetic and optical properties of NaGdF4:Nd^3+, Yb^3+, Tm^3+ nanocrystals with upconversion/downconversion luminescence from visible to the near-infrared second window 被引量:6
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作者 Xianwen Zhang Zhi Zhao +6 位作者 Xin Zhang David B. Cordes Brandon Weeks Bensheng Qiu Kailasnath Madanan Dhiraj Sardar Jharna Chaudhuri 《Nano Research》 SCIE EI CAS CSCD 2015年第2期636-648,共13页
We have designed and synthesized NaGdF4:Nd^3+, Yb^3+, Tm^3+. magnetic nano- phosphors with combined dual-mode downconversion (DC) and upconversion (UC) photoluminescence upon 800 run excitation. Hexagonal-phas... We have designed and synthesized NaGdF4:Nd^3+, Yb^3+, Tm^3+. magnetic nano- phosphors with combined dual-mode downconversion (DC) and upconversion (UC) photoluminescence upon 800 run excitation. Hexagonal-phase NaGdF4:Nd^3+, Yb^3+, Tm^3+ nanocrystals (NCs) with an average size of 21 nm were synthesized using a solvothermal approach. Nd^3+, Yb^3+, Tm^3+ triple-doped NaGdF4 NCs exhibit a broad range of photoluminescence peaks covering a near infrared first/second window (860-900, 1,000, and 1,060 nm), and visible emission including blue (475 nm), green (520 and 542 nm) and yellow (587 nm) after excitation at 800 nm. A mechanism involving circulation of energy over Gd^3+ sublattices as bridge ions and final trapping by the initial activator ions (Nd^3+) has been proposed. Penetration depth studies indicate that NIR emission is easily detected even at a large tissue thickness of 10 mm. These paramagnetic nanophosphors demonstrate a large magnetization value of 1.88 emu/g at 20 kOe and longitudinal relaxivity value of 1.2537 mM-1.S-1 as a Tl-weighted magnetic resonance imaging contrast agent. These NaGdF4:Nd^3+, Yb^3+ Tm^3+ NCs are promising for applications in biological and magnetic resonance imaging. 展开更多
关键词 near-infrared second window photoluminescence energy transfer NANOCRYSTALS
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