Chinese Journal of Quantum Electronics, Volume. 40, Issue 3, 293(2023)

Terahertz optical modulation research of rare-earth ferrite crystals

WU Anhua1,2、*, ZHAO Xiangyang1,2, SHANG Jiamin1,2, SHEN Hui3, and SU Liangbi1,2
Author Affiliations
  • 1State Key Laboratory of High Performance Ceramics and Superfine Microstructure, Shanghai Institute of Ceramics,Chinese Academy of Sciences, Shanghai 201899, China
  • 2Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
  • 3School of Materials Science and Engineering, Shanghai Institute of Technology, Shanghai 201418, China
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    References(34)

    [1] White R L. Review of recent work on the magnetic and spectroscopic properties of the rare-earth orthoferrites[J]. Journal of Applied Physics, 40, 1061-1069(1969).

    [2] Tsymbal L T, Bazaliy Y B, Derkachenko V N et al. Magnetic and structural properties of spin-reorientation transitions in orthoferrites[J]. Journal of Applied Physics, 101, 123919(2007).

    [3] Tsymbal L T, Bazaliy Y B, Kakazei G N et al. Mechanisms of magnetic and temperature hysteresis in ErFeO3 and TmFeO3 single crystals[J]. Journal of Applied Physics, 108, 083906(2010).

    [4] Kimel A V, Kirilyuk A, Tsvetkov A et al. Laser-induced ultrafast spin reorientation in the antiferromagnet TmFeO3[J]. Nature, 429, 850-853(2004).

    [5] Kimel A V, Kirilyuk A, Usachev P A et al. Ultrafast non-thermal control of magnetization by instantaneous photomagnetic pulses[J]. Nature, 435, 655-657(2005).

    [6] Eerenstein W, Mathur N D, Scott J F. Multiferroic and magnetoelectric materials[J]. Nature, 442, 759-765(2006).

    [7] Tokunaga Y, Furukawa N, Sakai H et al. Composite domain walls in a multiferroic perovskite ferrite[J]. Nature Materials, 8, 558-562(2009).

    [8] Tokunaga Y, Iguchi S, Arima T et al. Magnetic-field-induced ferroelectric state in DyFeO3[J]. Physical Review Letters, 101, 097205(2008).

    [9] Tokunaga Y, Taguchi Y, Arima T H et al. Electric-field-induced generation and reversal of ferromagnetic moment in ferrites[J]. Nature Physics, 8, 838-844(2012).

    [10] Baltz V, Manchon A, Tsoi M et al. Antiferromagnetic spintronics[J]. Reviews of Modern Physics, 90, 015005(2018).

    [11] Kimel A V. Three rules of design[J]. Nature Materials, 13, 225-226(2014).

    [12] Yamaguchi K, Nakajima M, Suemoto T. Coherent control of spin precession motion with impulsive magnetic fields of half-cycle terahertz radiation[J]. Physical Review Letters, 105, 237201(2010).

    [13] Yamaguchi K, Kurihara T, Minami Y et al. Terahertz time-domain observation of spin reorientation in orthoferrite ErFeO3 through magnetic free induction decay[J]. Physical Review Letters, 110, 137204(2013).

    [14] Suemoto T, Nakamura K, Kurihara T et al. Magnetization-free measurements of spin orientations in orthoferrites using terahertz time domain spectroscopy[J]. Applied Physics Letters, 107, 042404(2015).

    [15] Mikhaylovskiy R V, Hendry E, Kruglyak V V et al. Terahertz emission spectroscopy of laser-induced spin dynamics in TmFeO3 and ErFeO3 orthoferrites[J]. Physical Review B, 90, 184405(2014).

    [16] Mikhaylovskiy R V, Hendry E, Secchi A et al. Ultrafast optical modification of exchange interactions in iron oxides[J]. Nature Communications, 6, 8190(2015).

    [17] Wu A H, Wang B, Zhao X Y et al. Investigation on ultrafast opto-magnetism in rare-earth orthoferrites single crystals[J]. Scientia Sinica (Technologica), 47, 1177-1188(2017).

    [18] Weber M C, Guennou M, Evans D M et al. Emerging spin-phonon coupling through cross-talk of two magnetic sublattices[J]. Nature Communications, 13, 443(2021).

    [19] Lee J H, Jeong Y K, Park J H et al. Spin-canting-induced improper ferroelectricity and spontaneous magnetization reversal in SmFeO3[J]. Physical Review Letters, 107, 117201(2011).

    [20] Wang B, Zhao X Y, Wu A H et al. Single crystal growth and magnetic properties of Sm0.7Tb0.3FeO3 orthoferrite single crystal[J]. Journal of Magnetism and Magnetic Materials, 379, 192-195(2015).

    [21] Wu A H, Wang B, Zxhao X Y et al. Crystal growth of Sm0.3Tb0.7FeO3 and spin reorientation transition in Sm1-xTbxFeO3 orthoferrite[J]. Journal of Magnetism and Magnetic Materials, 426, 721-724(2017).

    [22] Shen H, Xian Q, Xie T et al. Modulation of magnetic transitions in SmFeO3 single crystal by Pr3+ substitution[J]. Journal of Magnetism and Magnetic Materials, 466, 81-86(2018).

    [23] Wu A H, Zhao X Y, Man P W et al. Growth, and magnetic study of Sm0.4Er0.6FeO3 single crystal grown by optical floating zone technique[J]. Journal of Crystal Growth, 486, 169-172(2018).

    [24] Liu X M, Xie T, Guo J J et al. Terahertz magnon and crystal-field transition manipulated by R3+-Fe3+ interaction in Sm0.5Pr0.5FeO3[J]. Applied Physics Letters, 113, 022401(2018).

    [25] Zhao X Y, Zhang K L, Liu X M et al. Spin reorientation transition in Sm0.5Tb0.5FeO3 orthoferrite single crystal[J]. AIP Advances, 6, 015201(2016).

    [26] Zhao X Y, Zhang K L, Xu K et al. Crystal growth and spin reorientation transition in Sm0.4Er0.6FeO3 orthoferrite[J]. Solid State Communications, 231/232, 43-47(2016).

    [27] Ren Z, Cheng L, Guretskii Sergei et al. Terahertz spectroscopy study of doping and magnetic field induced effects on spin reorientation in Ho1⁃xYxFeO3 single crystals[J]. Acta Physica Sinica, 69, 125-133(2020).

    [28] Kampfrath T, Sell A, Klatt G et al. Coherent terahertz control of antiferromagnetic spin waves[J]. Nature Photonics, 5, 31-34(2011).

    [29] Kono J. Coherent terahertz control[J]. Nature Photonics, 5, 5-6(2011).

    [30] Jin Z M, Ruan S Y, Li J G et al. Research progress of coherent control of terahertz spin waves and strong coupling in rare-earth orthoferrites[J]. Acta Physica Sinica, 68, 167501(2019).

    [31] Baierl S, Hohenleutner M, Kampfrath T et al. Nonlinear spin control by terahertz-driven anisotropy fields[J]. Nature Photonics, 10, 715-718(2016).

    [32] Schlauderer S, Lange C, Baierl S et al. Temporal and spectral fingerprints of ultrafast all-coherent spin switching[J]. Nature, 569, 383-387(2019).

    [33] Khusyainov D, Ovcharenko S, Buryakov A et al. Composite multiferroic terahertz emitter: Polarization control via an electric field[J]. Physical Review Applied, 17, 044025(2022).

    [34] Baydin A, Makihara T, Peraca N M et al. Time-domain terahertz spectroscopy in high magnetic fields[J]. Frontiers of Optoelectronics, 14, 110-129(2021).

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    Anhua WU, Xiangyang ZHAO, Jiamin SHANG, Hui SHEN, Liangbi SU. Terahertz optical modulation research of rare-earth ferrite crystals[J]. Chinese Journal of Quantum Electronics, 2023, 40(3): 293

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    Paper Information

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    Received: Sep. 30, 2022

    Accepted: --

    Published Online: Jun. 30, 2023

    The Author Email: WU Anhua (wuanhua@mail.sic.ac.cn)

    DOI:10.3969/j.issn.1007-5461.2023.03.001

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