Optoelectronics Letters, Volume. 18, Issue 5, 269(2022)
Design and research of magnetic field sensor based on grapefruit optical fiber filled with magnetic fluid
[1] [1] MUHAMMAD M B, BI W H, LIU X J, et al. Magnetic field sensor based on the magnetic fluid infiltrate-on into the cladding air holes of the solid-core photonic crystal fiber[J]. Optical engineering, 2019, 58(9):096107.
[2] [2] DANG H B, MALOOF A C, ROMALIS M V. Ultra-high sensitivity magnetic field and magnetization measurements with an atomic magnetometer[J]. Applied physics letters, 2010, 97(15):151110.
[3] [3] LANGFELDER G, TOCCHIO A. Operation of Lorentzforce MEMS magnetometers with a frequency-offset between driving current and mechanical resonance[J]. IEEE transactions on magnetics, 2014, 50(1):1-6.
[4] [4] SNOEIJ M F, SCHAFFER V, UDAYASHANKAR S, et al. Integrated fluxgate magnetometer for use in isolated current sensing[J]. IEEE journal of solid-state circuits, 2016, 51(7):1684-1694.
[5] [5] RIPKA P, JANOSEK M. Advances in magnetic field sensors[J]. IEEE sensor journal, 2010, 10(6):1108-1116.
[6] [6] CHEN Y F, HAN Q, LIU T G. All-fiber optical modulator based on no-core fiber and magnetic fluid as cladding[J]. Chinese physics B, 2015, 24(1):014214.
[7] [7] WANG Y, YAN G F, LIAN Z G, et al. Liquid-level sensing based on a hollow core Bragg fiber[J]. Optics express, 2018, 26(17):21656-21663.
[8] [8] JIN L, GUAN B O, WEI H F. Sensitivity characteristics of Fabry-Perot pressure sensors based on hollow-core microstructured fibers[J]. Journal of lightwave technology, 2013, 31(15):2526-2532.
[9] [9] XIAO L M, JIN W, DEMOKAN M S, et al. Fabrication of selective injection microstructured optical fibers with a conventional fusion splicer[J]. Optics express, 2005, 13(22):9014-9022.
[10] [10] SALCEDA-DELGADO G, VAN NEWKIRK A, ANTONIO-LOPEZ J, et al. Compact fiber-optic curvature sensor based on super-mode interference in a seven-core fiber[J]. Optics letters, 2015, 40(7):1468-1471.
[11] [11] WEI F, LIU D, MALLIK A K, et al. Magnetic field sensor based on a tri-microfiber coupler ring in magnetic fluid and a fiber Bragg grating[J]. Sensors, 2019, 19(23):5100.
[12] [12] TIAN H, SONG Y X, LI Y Z, et al. Fiber-optic vector magnetic field sensor based on mode interference and magnetic fluid in a two-channel tapered structure[J]. IEEE photonics journal, 2019, 11 (6):1-9.
[13] [13] WANG J, PEI L, WANG J, et al. Magnetic field and temperature dual-parameter sensor based on magnetic fluid materials filled photonic crystal fiber[J]. Optics express, 2020, 28(2):1456-1471.
[14] [14] ZHU L, ZHAO N, LIN Q, et al. Optical fiber SPR magnetic field sensor based on photonic crystal fiber with the magnetic fluid as cladding[J]. Measurement science and technology, 2021, 32(7):075106.
[15] [15] ANDREW B G. Offshore renewable energy:ecological implications of generating electricity in the coastal zone[J]. Journal of applied ecology, 2005, 42(4): 605-615.
[16] [16] CHEN F F, JIANG Y. Fiber optic magnetic field sensor based on the TbDyFe rod[J]. Measurement science and technology, 2014, 25(8):085106.
[17] [17] DAI M H, YANG X B, LI H L, et al. Magnetic field sensor based on magnetic fluid clad etched fiber Bragg grating[J]. Optical fiber technology, 2011, 17(3): 210213.
[18] [18] DENG M, HUANG C, LIU D H, et al. All fiber magnetic field sensor with ferrofluid filled tapered microstructured optical fiber interferometer[J]. Optics express, 2015, 23(16):20668-20674.
[19] [19] SHI Q, CHEN D, JIANG X, et al. Refractive index sensor based on Mach-Zehnder interferometer formed by two cascaded single mode fiber corners[J]. Microwave and optical technology letters, 2014, 56(11): 2642-2645.
[20] [20] CHEN Y F, YANG S Y, TSE W S, et al. Thermal effect on the field-dependent refractive index of the magnetic fluid film[J]. Applied physics letters, 2003, 82(20): 3481-3483.
[21] [21] HUANG Y, WANG T Y, DENG C L, et al. A highly sensitive intensity-modulated optical fiber magnetic field sensor based on the magnetic fluid and multimode interference[J]. Journal of sensors, 2017, 2017:1-7.
[22] [22] KIM J G, KIM S K, PARK M W, et al. Loss characteristic analysis of HTS DC power cable using LCC based DC transmission system[J]. IEEE transactions on applied superconductivity, 2012, 22(3):5801304.
Get Citation
Copy Citation Text
WANG Mengye, JIN Wa, LIU Xuejing, SUN Wenjie, ZHANG Chenhui, BI Weihong. Design and research of magnetic field sensor based on grapefruit optical fiber filled with magnetic fluid[J]. Optoelectronics Letters, 2022, 18(5): 269
Received: Aug. 27, 2021
Accepted: Nov. 26, 2021
Published Online: Jan. 20, 2023
The Author Email: Wa JIN (jinwa@ysu.edu.cn)