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Engineering and Technology

D-Index
37
Citations
3742
World Ranking
8522
National Ranking
1472

Overview

Ri-qing Lv is affiliated with Northeastern University in China and has a significant body of research in the field of engineering, particularly focusing on electrical and electronic engineering. Their scholarly output spans several specialized subfields, including bioengineering, atomic and molecular physics, optics, biomedical engineering, and computational mechanics.

The primary topics of their research include:

  • Advanced Fiber Optic Sensors
  • Photonic and Optical Devices
  • Photonic Crystal and Fiber Optics
  • Magneto-Optical Properties and Applications
  • Analytical Chemistry and Sensors
  • Advanced Fiber Laser Technologies
  • Characterization and Applications of Magnetic Nanoparticles

Ri-qing Lv has published extensively in several scientific venues. The most frequent publication venues are:

  • IEEE Transactions on Instrumentation and Measurement
  • IEEE Sensors Journal
  • Optics Letters
  • Measurement
  • Journal of Lightwave Technology

Recent papers authored by Ri-qing Lv showcase their contributions in optical fiber sensing and measurement technologies. Some of these notable publications include:

  • "Multifunctional optical fiber sensor for simultaneous measurement of temperature and salinity", 2020, Optics Letters
  • "Review of femtosecond laser direct writing fiber-optic structures based on refractive index modification and their applications", 2021, Optics & Laser Technology
  • "Simultaneous Measurement of Temperature and Relative Humidity Using Cascaded C-shaped Fabry-Perot interferometers", 2021, Journal of Lightwave Technology
  • "Reflective Highly Sensitive Fabry-Perot Magnetic Field Sensor Based on Magneto-Volume Effect of Magnetic Fluid", 2021, IEEE Transactions on Instrumentation and Measurement
  • "High-sensitivity salinity measurement sensor based on no-core fiber", 2020, Sensors and Actuators A Physical

Frequent co-authors who have collaborated with Ri-qing Lv include:

  • Yong Zhao
  • Hong-kun Zheng
  • Zi-ting Lin
  • Yanan Zhang
  • Xixin Wang

The scope of Ri-qing Lv's work centers primarily on developing and advancing fiber optic sensor technologies and photonic devices, with applications in environmental monitoring and measurement systems. Their publications indicate contributions to both theoretical studies and practical sensor designs, often intersecting with magnetic field sensing and laser technology.

Best Publications

  • A review for optical sensors based on photonic crystal cavities

    Ya-nan Zhang;Yong Zhao;Ri-qing Lv

  • Small in-fiber Fabry-Perot low-frequency acoustic pressure sensor with PDMS diaphragm embedded in hollow-core fiber

    Yong Zhao;Mao-qing Chen;Feng Xia;Ri-qing Lv

  • Hollow-core photonic crystal fiber Fabry–Perot sensor for magnetic field measurement based on magnetic fluid

    Yong Zhao;Ri-qing Lv;Yu Ying;Qi Wang

  • Tunable Characteristics and Mechanism Analysis of the Magnetic Fluid Refractive Index With Applied Magnetic Field

    Yong Zhao;Di Wu;Ri-Qing Lv;Yu Ying

  • Magnetic Fluid-Filled Optical Fiber Fabry–Pérot Sensor for Magnetic Field Measurement

    Ri-Qing Lv;Yong Zhao;Dan Wang;Qi Wang

  • Highly Sensitive Airflow Sensor Based on Fabry–Perot Interferometer and Vernier Effect

    Yong Zhao;Peng Wang;Riqing Lv;Xu Liu

  • Sensitivity-enhanced temperature sensor based on PDMS-coated long period fiber grating

    Qi Wang;Chao Du;Jiaming Zhang;Riqing Lv

  • Fiber Optic Fabry-Perot Magnetic Field Sensor With Temperature Compensation Using a Fiber Bragg Grating

    Yong Zhao;Ri-Qing Lv;Dan Wang;Qi Wang

  • Magnetic Field Sensor Based on Photonic Crystal Fiber Taper Coated With Ferrofluid

    Yong Zhao;Di Wu;Ri-Qing Lv

  • Review of optical fiber Mach–Zehnder interferometers with micro-cavity fabricated by femtosecond laser and sensing applications

    Yong Zhao;Hang Zhao;Ri-qing Lv;Jian Zhao

  • Magnetic Field Measurement Based on the Sagnac Interferometer With a Ferrofluid-Filled High-Birefringence Photonic Crystal Fiber

    Yong Zhao;Di Wu;Ri-Qing Lv;Jin Li

  • In-fiber rectangular air fabry-perot strain sensor based on high-precision fiber cutting platform

    Yong Zhao;Mao-qing Chen;Ri-qing Lv;Feng Xia

  • Novel optical devices based on the tunable refractive index of magnetic fluid and their characteristics

    Yong Zhao;Yuyan Zhang;Yuyan Zhang;Riqing Lv;Qi Wang

  • Simultaneous measurement of RI and temperature based on the combination of Sagnac loop mirror and balloon-like interferometer

    Yong Zhao;Xu Liu;Ri-qing Lv;Qi Wang

  • Review on Optical Fiber Sensors Based on the Refractive Index Tunability of Ferrofluid

    Yong Zhao;Xu Liu;Ri-Qing Lv;Ya-Nan Zhang

  • Multifunctional optical fiber sensor for simultaneous measurement of temperature and salinity.

    Hongkun Zheng;Riqing Lv;Yong Zhao;Ruijie Tong

  • Review of femtosecond laser direct writing fiber-optic structures based on refractive index modification and their applications

    Jian Zhao;Yong Zhao;Yun Peng;Ri-qing Lv

  • High Sensitivity Balloon-Like Interferometer for Refractive Index and Temperature Measurement

    Xu Liu;Yong Zhao;Ri-Qing Lv;Qi Wang

  • Simultaneous measurement of temperature and relative humidity using cascaded C-shaped Fabry-Perot interferometers

    Fei Li;Xuegang Li;Xue Zhou;Ya-nan Zhang

  • Highly Sensitive Reflective Fabry–Perot Magnetic Field Sensor Using Magnetic Fluid Based on Vernier Effect

    Yong Zhao;Xi-Xin Wang;Ri-Qing Lv;Gui-Lin Li

  • Multi-modes interferometer for magnetic field and temperature measurement using Photonic crystal fiber filled with magnetic fluid

    Xue-gang Li;Xue Zhou;Yong Zhao;Ri-Qing Lv

  • Design and experiment of an optical fiber micro bend sensor for respiration monitoring

    Hai-feng Hu;Si-jia Sun;Ri-qing Lv;Yong Zhao

  • High-sensitivity salinity measurement sensor based on no-core fiber

    Zi-ting Lin;Ri-qing Lv;Yong Zhao;Hong-kun Zheng

  • A practical FBG pressure sensor based on diaphragm-cantilever

    Yong Zhao;Hong-kun Zheng;Ri-qing Lv;Yang Yang

Frequent Co-Authors

Heike Ebendorff-Heidepriem
Heike Ebendorff-Heidepriem University of Adelaide
Stephen C. Warren-Smith
Stephen C. Warren-Smith University of South Australia

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