導航切換



           袁配     副教授      碩導





           儀器科學(xué)與技術學(xué)科


基本信息

性别:女    ||  出生年月:1989年8月     ||  政治面(miàn)貌:中共黨員

現任職稱:副教授

最後(hòu)學(xué)曆:研究生    ||  最後(hòu)學(xué)位:博士     ||  獲學(xué)位單位:中國(guó)科學(xué)院大學(xué)

聯系方式:     ||  郵箱:yuanpei@bistu.edu.cn    ||  通訊地址:北京信息科技大學(xué)酒仙橋校區

導師信息

碩導/博導:碩導     ||  批碩/博導時(shí)間:2020年

在讀碩士:2       || 畢業碩士:0

所屬院系、學(xué)科及研究方向(xiàng)

所屬學(xué)院:儀器科學(xué)與光電工程學(xué)院

所屬系:智能(néng)感知工程系

所屬學(xué)科:儀器科學(xué)與技術

研究方向(xiàng)1:半導體光電子集成(chéng)器件

研究方向(xiàng)2:光纖傳感與光子集成(chéng)波長(cháng)解調技術

研究方向(xiàng)3:矽基光電子學(xué) 

工作簡曆

20199-201912月   北京信息科技大學(xué)  講師

201912-今           北京信息科技大學(xué)  副教授 

承擔教學(xué)任務 

本科生:《智能(néng)信息新技術導論》、《軟件技術基礎》

研究生:《文獻閱讀與寫作》 

承擔科研項目情況 

1.2023-2025:國(guó)家自然科學(xué)基金青年基金項目,基于相位差分輸入結構的陣列波導光栅密集光譜解調機制研究,主持

2.2022-2024:北京市教委科研計劃科技一般項目,用于光子集成(chéng)光纖光栅解調系統的陣列波導光栅關鍵技術研究,主持 

主要論文目錄 

1. P. Yuan, Y. Wang, Y. Wu, et al. Design and fabrication of wavelength tunable AWGs based on the thermo-optic effect. Chinese Optics Letters, 2018, 16(1):010601

2. P. Yuan, Y. Wang, Y. Wu, et al. Design and fabrication of two kind of SOI-based EA-type VOAs. Optics and Laser Technology, 2018, 102:166-173

3. P. Yuan, Y. Wang, Y. Wu, et al. 25-channel 200 GHz AWG based on SOI ridge waveguides. Journal of Infrared and Millimeter Waves, 2018, 37(6):673-678

4. P. Yuan, Y. Wang, Y.D. Wu, et al. 16-channel dual-tuning wavelength division multiplexer/demultiplexer. Chinese Physics B, 2018, 27(12):124208

5. P. Yuan, Y. Wang, Y. Wu, et al. Improved performance of a wavelength tunable arrayed waveguide grating based on SOI. Chinese Physics Letters, 2019, 36(5):054204

6. P. Yuan, Y. Wang, Y. Wu, et al. Variable optical attenuators based on SOI with 3μm top silicon layer. Applied Optics, 2019, 58(17):4630-4636

7. P. Yuan, Y. Wang, Y. Wu, et al. Monolithic integration of a wavelength division multiplexer/ demultiplexer and electro-absorption VOAs based on 3 μm-SOI. Infrared and Laser Engineering, 2019, 48(8):0818004

8. P. Yuan, Y. Wang, Y. Wu, et al. Design and fabrication of an etching diffraction grating based on photonic crystal reflection mirrors. Infrared and Laser Engineering, 2019, 48(9):0916005

9. P. Yuan, S Weng, S Ji, et al. Performance analysis of fiber Bragg grating sensor interrogators based on arrayed waveguide gratings, Optical Engineering, 2021, 60(6):066101

10. S Weng, P. Yuan, W Zhuang, et al. SOI-Based Multi-Channel AWG with Fiber Bragg Grating Sensing Interrogation System, Photonics, 2021, 8(6): 214

11. S Weng, P. Yuan, L. Lu, et al. SOI-based arrayed waveguide grating with extended dynamic range for fiber Bragg grating interrogator, Optical Fiber Technology, 2021 68:102815

12. K. Li, P. Yuan, L. Lu, et al. PLC‐Based Arrayed Waveguide Grating Design for Fiber Bragg Grating Interrogation System, nanomaterials, 2022, 12:2938