Laser Technology, Volume. 49, Issue 2, 223(2025)
Measurement of Verdet constant of Er, Yb∶YAl3(BO3)4 crystal
[1] [1] KRISTENSEN M, BLOK F J, van EIJKELENBORG M A,et al. Onset of a collisional modification of the Faraday effect in a high-density atomic gas[J]. Physical Review, 1995, A51(2): 1085-1096.
[2] [2] LABEYRIE G, MINIATURA C, KAISER R. Large Faraday rotation of resonant light in a cold atomic cloud[J]. Physical Review, 2001, A64(3): 033402.
[3] [3] FRANKE-ARNOLD S, ARNDT M, ZEILINGER A. Magneto-optical effects with cold lithium atoms[J]. Journal of Physics B: Atomic Molecular and Optical Physics, 2001, 34(12): 2527-2536.
[4] [4] PANDEY K, WASAN A, NATARAJAN V. Coherent control of magneto-optic rotation[J]. Journal of Physics, 2008, B41(22): 225503.
[6] [6] WILLIAMSON L A, CHEN Y H, LONGDELL J J. Magneto-optic modulator with unit quantum efficiency[J]. Physical Review Letters, 2014, 113(20): 203601.
[7] [7] PINTUS P, RANZANI L, PINNA S,et al. An integrated magneto-optic modulator for cryogenic applications[J]. Nature Electronics, 2022, 5(9): 604-610.
[8] [8] KEMMET S, MINA M, WEBER R J. Current-controlled, high-speed magneto-optic switching[J]. IEEE Transactions on Magnetics, 2010, 46(6): 1829-1831.
[9] [9] MURAI T, SHOJI Y, NISHIYAMA N,et al. Nonvolatile magneto-optical switches integrated with a magnet stripe array[J]. Optics Express, 2020, 28(21): 31675-31685.
[10] [10] HARRIS L, OTTAWAY D, VEITCH P J. The Verdet constant of Er-doped crystalline YAG and tellurite glass at 1645 nm[J]. Applied Physics, 2012, B106(2): 429-433.
[11] [11] AL-BASHEER W. Verdet constant determination of dielectric media using a new versatile, portable and low-cost magneto-optical rotator[J]. European Journal of Physics, 2020, 41(4): 045804.
[12] [12] MOLLAEE M, LUCAS P, ARI J,et al. High Verdet constant of Te20As30Se50 glass in the mid-infrared[J]. Optics Letters, 2020, 45(8): 2183-2186.
[13] [13] YAO P, CHEN X, HAO P,et al. Introduction and measurement of the effective Verdet constant of spun optical fibers[J]. Optics Express, 2021, 29(15): 23315-23330.
[14] [14] BARCZAK K, CIMEK J, STEPIEN R,et al. Measurements of Verdet constant in heavy metal oxide glasses for magneto-optic fiber current sensors[J]. Optical Materials, 2022, 123(4): 111942.
[15] [15] TAMARU Y, FUCHIMUKAI A, UEHARA H,et al. Verdet constant dispersion of magnesium fluoride for deep-ultraviolet and vacuum-ultraviolet Faraday rotators[J]. Optics Express, 2023, 31(15): 7807-7812.
[16] [16] WU J, ZHENG K, ZHAO Y,et al. Effective Faraday rotator based on the TbYO3 crystal with a high Verdet constant and a high thermal conductivity[J]. Optics Letters, 2023, 48(20): 5313-5315.
[17] [17] LEONYUK N I, WANG J, DAWES J M,et al. New nonlinear optical and laser crystals of borate family[J]. Journal of Materials Science: Materials in Electronics, 2007, 18(S1): 293-297.
[18] [18] CHENG W, ZHANG T, JIANG Z,et al. 4.55 W continue-wave dual-end pumping of Er∶Yb∶YAl3(BO3)4 microchip laser at 1.5 m[J]. Applied Physics Letters, 2023, 123(17): 171101.
[21] [21] YAO Z J, LI Y J, LIU K L,et al. Wavelength tuning of solid-state continuous-wave single frequency 1.5 m laser by manipulating net gain spectra[J]. Optics Express, 2022, 30(24): 44085.
[23] [23] LI Y J, FENG J X, LI P,et al. 400 mW low noise continuous-wave single-frequency Er, Yb∶YAl3(BO3)4 laser at 1.55 m[J]. Optics Express, 2013, 21(5): 6082-6090.
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WANG Wenrong, QI Meng, LI Yuanji, FENG Jinxia, ZHANG Kuanshou. Measurement of Verdet constant of Er, Yb∶YAl3(BO3)4 crystal[J]. Laser Technology, 2025, 49(2): 223
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Received: Jan. 18, 2024
Accepted: May. 13, 2025
Published Online: May. 13, 2025
The Author Email: LI Yuanji (liyuanji@sxu.edu.cn)