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Spectroscopy Letters
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Volume 55, 2022 - Issue 1
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Research Articles

Dynamic effect to gyromagnetic factors of the compressed tetragonal molybdenum (V) tetrahedral center in the light-irradiated lead molybdate crystal

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Pages 13-19 | Received 17 Jul 2021, Accepted 15 Nov 2021, Published online: 06 Dec 2021

References

  • Bonner, W. A.; Zydzik, G. J. Growth of Single Crystal Lead Molybdate for Acousto-Optic Applications. Journal of Crystal Growth 1970, 7(1), 65–68. DOI: 10.1016/0022-0248(70)90116-8.
  • Minowa, M.; Itakura, K.; Moriyama, S.; Ootani, W. Measurement of the Property of Cooled Lead Molybdate as a Scintillator. Nuclear Instruments & Methods 1992, 320(3), 500–503. DOI: 10.1016/0168-9002(92)90945-Z.
  • Damen, E. P. N.; Arts, A. F. M.; de Wijn, H. W. High-Frequency Monochromatic Acoustic Waves Generated by Laser-Induced Thermomodulation. Physical Review Letters 1995, 74, 4249–4252. DOI: 10.1103/PhysRevLett.74.4249.
  • Kwolek, P.; Pilarczyk, K.; Tokarski, T.; Łapczyńska, M.; Pacia, M.; Szaciłowski, K. Lead Molybdate–A Promising Material for Optoelectronics and Photocatalysis. Journal of Materials Chemistry C 2015, 3(11), 2614–2623. DOI: 10.1039/C4TC02750G.
  • Hernández-Uresti, D. B.; Martínez-de la Cruz, A.; Torres-Martínez, L. M. Photocatalytic Properties of PbMoO4 Synthesized by Co-precipitation Method: Organic Dyes Degradation under UV Irradiation. Research on Chemical Intermediates 2012, 38(3–5), 817–828. DOI: 10.1007/s11164-011-0420-x.
  • Vyas, A.; Joshi, C. P.; Moharil, S. V. NIR Emitting Phosphors Based on PbMoO4 for Modification of Solar Spectrum. Journal of Luminescence 2018, 196, 259–263. DOI: 10.1016/j.jlumin.2017.12.044.
  • Basiev, T. T.; Vassiliev, S. V.; Doroshenko, M. E.; Osiko, V. V.; Puzikov, V. M.; Kosmyna, M. B. Laser and Self-Raman-Laser Oscillations of PBMoO4:Nd3+ Crystal under Laser Diode Pumping. Optics Letters 2006, 31(1), 65–67. DOI: 10.1364/ol.31.000065.
  • Aghamalyan, N. R.; Demirkhanyan, G. G.; Hovsepyan, R. K.; Kostanyan, R. B.; Zargaryan, D. G. Room-Temperature Near Infrared Emission and Green Up-Conversion in PbMoO4: Er3+ Crystals. Optical Materials 2010, 32(9), 1046–1049. DOI: 10.1016/j.optmat.2010.02.028.
  • Aghamalyan, N. R.; Kostanyan, R. B.; Sanamyan, T. V. Optical Absorption and Spectroscopic Characterization of Er3+ Ions in Lead Molybdate Crystals. Journal of Physics: Condensed Matter 2001, 13(30), 6585–6594. DOI: 10.1088/0953-8984/13/30/314.
  • Piwowarska, D.; Gnutek, P.; Rudowicz, C. Modeling the Zero-Field Splitting Parameters and Local Structure of Co2+ Ions Doped into PbMoO4 Crystal Based on Crystal field Approach and Superposition Model Analysis. Optical Materials 2018, 84, 466–474. DOI: 10.1016/j.optmat.2018.07.003.
  • Buryi, M.; Laguta, V.; Fasoli, M.; Moretti, F.; Trubitsyn, M.; Volnianskii, M.; Vedda, A.; Nikl, M. Electron Self-Trapped at Molybdenum Complex in Lead Molybdate: An EPR and TSL Comparative Study. Journal of Luminescence 2017, 192, 767–774. DOI: 10.1016/j.jlumin.2017.07.066.
  • Buryi, M.; Laguta, V.; Fasoli, M.; Moretti, F.; Jurek, K.; Trubitsyn, M.; Volnianskii, M.; Nagorny, S.; Shlegel, V.; Vedda, A.; Nikl, M. Charge Trapping Processes and Energy Transfer Studied in Lead Molybdate by EPR and TSL. Journal of Luminescence 2019, 205, 457–466. DOI: 10.1016/j.jlumin.2018.09.052.
  • Azarbayejani, G. H.; Merlo, A. L. Electron Spin Resonance of Mo5+ in CaWO4. Physical Review 1965, 137(2A), A489–A490. DOI: 10.1103/PhysRev.137.A489.
  • Mei, Y.; Zheng, W. C.; Wei, C. F. Research on Spin-Hamiltonian Parameters and Local Structure for the Tetragonal Mo5+ Centers in CaWO4 Crystal. Acta Physica Polonica A 2014, 126(6), 1275–1279. DOI: 10.12693/APhysPolA.126.1275.
  • Lingam, K. V.; Nair, P. G.; Venkataraman, B. Electron Spin Resonance of Cr5+ in CaWO4. Proceedings of the Indian Academy of Sciences-Section A 1969, 70(1), 29–41. DOI: 10.1007/BF03046933.
  • Kurkin, I. N.; Chirkin Yu, K.; Shlenkin, V. I. Study of Relaxation Characteristics of Cr5+ in CaMoO4 Single-Crystals. Soviet Physics-Solid State 1976, 17, 2028–2030.
  • Zhang, L.; Mei, Y.; Wei, C. F.; Zheng, W. C. Researching the Spin-Hamiltonian Parameters of Cr5+ Ions in CaWO4 and CaMoO4 Crystals with the Two-Mechanism Model. Radiation Effects and Defects in Solids 2015, 170(11), 931–937. DOI: 10.1080/10420150.2016.1138223.
  • Gurmen, E.; Daniels, E.; King, J. S. Crystal Structure of SrMoO4, SrWO4, CaMoO4 and BaWO4 by Neutron Diffraction. The Journal of Chemical Physics 1971, 55(3), 1093–1097. DOI: 10.1063/1.1676191.
  • Mei, Y.; Zheng, W. C.; Yang, Y. G.; Liu, H. G. An Interpretation of the g Factors for the Tetragonally-Compressed Cr5+ Centers in YVO4 and YPO4 Crystals. Physica B: Condensed Matter. 2012, 407(21), 4365–4368. DOI: 10.1016/j.physb.2012.07.035.
  • Greenblatt, M.; Pifer, J. H.; McGarvey, B. R.; Wanklyn, B. M. Electron Spin Resonance of Cr5+ in YPO4 and YVO4. The Journal of Chemical Physics 1981, 74(11), 6014–6017. DOI: 10.1063/1.441041.
  • Ballhausen, C.J.; Liehr, A. D. Intensities in Inorganic Complexes: Part II. Tetrahedral Complexes. Journal of Molecular Spectroscopy 1958, 2(1–6), 342–360. DOI: 10.1016/0022-2852(58)90086-9.
  • O’Brien, M. C. M. The Dynamic Jahn-Teller Effect in Octahedrally Co-ordinated d9 Ions. Proceedings of Royal Society of London: Mathematical and Physical Sciences 1964, 281, 323–339.
  • Harrowfield, B. V.; Dempster, A. J.; Freeman, T. E.; Pilbrow, J. R. Phase Transitions and the Jahn-Teller Effect in Tl2PbCu(NO2)6. Journal of Physics C: Solid State Physics 1973, 6(12), 2058–2065. DOI: 10.1088/0022-3719/6/12/008.
  • Mei, Y.; Peng, R.-M.; Wei, C.-F.; Zheng, W.-C. Spin-Hamiltonian Parameters and Local Structures of the Tetragonal (CrO4)3− Clusters in Cr5+-Doped KDP-Type Crystals. Optical Materials 2014, 36(7), 1250–1254. DOI: 10.1016/j.optmat.2014.03.008.
  • Zhou, Y.-W.; Mei, Y.; Wei, C.-F.; Zheng, W.-C. Explanations of the g Factors for the Tetragonal (MoO4)3− Clusters in γ-Irradiated (MoO4)2−-Doped KDP and ADP Crystals through the Dynamic Effect. The European Physical Journal Applied Physics 2016, 75(1), 10701. DOI: 10.1051/epjap/2016160033.
  • Mei, Y.; Zheng, W. C.; Yang, Y. G. Investigations of the EPR g Factors and Defect Structure for the Cu2+-VNa Center in X-Irradiated NaCl: Cu+ Crystal. Physica B: Condensed Matter 2012, 407(4), 681–683. DOI: 10.1016/j.physb.2011.12.004.
  • Ryadun, A. A.; Nadolinny, V. A.; Pavlyuk, A. A.; Trifonov, V. A. Influence of Photoexcitation on the EPR Spectra of Mo5+ in Li2Zn2(MoO4)3: Ce3+, Cu2+ Crystals Annealed in a CO2 Atmosphere. Physics of the Solid State 2013, 55(4), 720–724. DOI: 10.1134/S1063783413040252.
  • Li, B. X.; Feng, W. L.; Su, P. Studies of the Spin-Hamiltonian Parameters for Mo5+ Ions in Double Molybdate Li2Zn2(MoO4)3 Crystal Annealed in a CO2 Atmosphere. Optik 2015, 126(20), 2700–2702. DOI: 10.1016/j.ijleo.2015.06.054.
  • Abragam, A.; Bleaney, B. Electron Paramagnetic Resonance of Transition Ions. Oxford University Press: London, 1970.
  • Maolu, D.; Rudowicz, C. Gyromagnetic Factors and Zero-Field Splitting of t23 Terms of Cr3+ Clusters with Trigonal Symmetry: Al2O3, CsMgCl3, and CsMgBr3. Physical Review. B, Condensed Matter 1992, 46(14), 8974–8977. DOI: 10.1103/physrevb.46.8974.
  • Clementi, E.; Raimondi, D. L. Atomic Screening Constants from SCF Functions. The Journal of Chemical Physics 1963, 38(11), 2686–2689. DOI: 10.1063/1.1733573.
  • Clementi, E.; Raimondi, D. L.; Reinhardt, W. P. Atomic Screening Constants from SCF Functions: II. Atoms with 37–86 Electrons. The Journal of Chemical Physics 1967, 47(4), 1300–1307. DOI: 10.1063/1.1712084.
  • Newman, D. J.; Ng, B. The Superposition Model of Crystal Fields. Reports on Progress in Physics 1989, 52(6), 699–763. DOI: 10.1088/0034-4885/52/6/002.
  • Yu, W. L.; Zhao, M. G. Spin-Hamiltonian Parameters of S-State Ions. Physical Review B 1988, 37, 9254–9267.
  • Zheng, W. C.; Fang, W.; Mei, Y. Studies of the Optical Spectra and Spin Hamiltonian Parameters for the Rhombic Zr3+ Centers in Y3Al5O12 Crystal. Journal of Applied Physics 2007, 101(5), 053911. DOI: 10.1063/1.2472647.
  • Feng, W. L.; Yang, W. Q.; Zheng, W. C.; Li, X. M. Investigations of the Spin-Hamiltonian Parameters and Tetragonal Distortions due to Jahn-Teller Effect for the Monovalent d9 (Ni+, Pd+, Pt+) Impurity Centers in AgCl Crystal. Journal Alloys and Compounds 2010, 507, 498–501.
  • Zheng, W. C.; Fang, W.; He, L.; Mei, Y. Spin Hamiltonian Parameters and Defect Structure for the X-ray-Induced Nb4+ Center in LiNbO3 Crystal. Journal of Alloys and Compounds 2008, 453(1–2), 32–35. DOI: 10.1016/j.jallcom.2006.11.083.

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