• Journal of Inorganic Materials
  • Vol. 36, Issue 5, 521 (2021)
Zhiyu ZHU1,2, Yan JIAO1,2, Chongyun SHAO1, Dongbing HE1,*, and Lili HU1,*
Author Affiliations
  • 11. Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
  • 22. Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
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    DOI: 10.15541/jim20200389 Cite this Article
    Zhiyu ZHU, Yan JIAO, Chongyun SHAO, Dongbing HE, Lili HU. Effects of γ-Irradiation and Thermal Annealing on Photo-thermal-refractive Glass[J]. Journal of Inorganic Materials, 2021, 36(5): 521 Copy Citation Text show less
    References

    [1] N NIKONOROV, V ASEEV, V DUBROVIN et al. Design and Fabrication of Optical Devices Based on New Polyfunctional Photo-thermo-refractive Glasses. 4th International Conference on Photonics. Optics and Laser Technology. IEEE, 20-27(2016).

    [2] J LUMEAU, E D ZANOTTO. A review of the photo-thermal mechanism and crystallization of photo-thermo-refractive (PTR) glass. International Materials Reviews, 62, 348-366(2016).

    [3] J LUMEAU, L GLEBOVA, L B GLEBOV. Near-IR absorption in high-purity photothermorefractive glass and holographic optical elements: measurement and application for high-energy lasers. Applied Optics, 50, 5905-5911(2011).

    [4] Z N YANG, H Y WANG, Q S LU et al. An 80-W laser diode array with 0.1 nm linewidth for rubidium vapor laser pumping. Chinese Physics Letters, 28(2011).

    [5] H XING, C DEJIANG, W SIBO et al. Single-frequency Nd: YVO4 laser based on reflective bragg grating combined with fabry-perot etalon. Acta Optica Sinica, 39(2019).

    [6] I SERGE, S MAXIM, K DARYA et al. Blue shift of the plasmon resonance in fluoride photo-thermo-refractive glass. Optical Materials Express, 8, 2734-2742(2018).

    [7] A I SIDOROV, N V NIKONOROV, A I IGNATIEV et al. The effect of UV irradiation and thermal treatments on structural properties of silver-containing photo-thermo-refractive glasses: studies by Raman spectroscopy. Optical Materials, 98, 109422(2019).

    [8] X J FU, L X SONG, J C LI. Coloration of Ce-doped multicomponent silicate glasses by electron irradiation. Journal of Inorganic Materials, 29, 1018-1022(2014).

    [9] V D DUBROVIN, A I IGNATIEV, N V NIKONOROV et al. Luminescence of silver molecular clusters in photo-thermo- refractive glasses. Optical Materials, 36, 753-759(2014).

    [10] R SALH. Defect Related Luminescence in Silicon Dioxide Network: A Review. Rijeka: InTech, 135-172(2011).

    [11] A F ZATSEPIN, V B GUSEVA, V A VAZHENIN et al. Paramagnetic defects in gamma-irradiated Na/K-silicate glasses. Physics of the Solid State, 54, 1776-1784(2012).

    [12] R E D LAMAESTRE, H BEA, H BERNAS et al. Irradiation- induced Ag nanocluster nucleation in silicate glasses: analogy with photography. Physical review B, Condensed Matter and Materials Physics, 76, 205431(2007).

    [13] H S TSAI, D S CHAO, Y H WU et al. Spectroscopic investigation of gamma radiation-induced coloration in silicate glass for nuclear applications. Journal of Nuclear Materials, 453, 233-238(2014).

    [14] N V NIKONOROV, A I SIDOROV, V A TSEKHOMSKII. Silver nanoparticles in oxide glasses: technologies and properties. In-Tech, 177, 177-200(2010).

    [15] U KREIBIG. Small silver particles in photosensitive glass: their nucleation and growth. Applied Physics, 10, 255-264(1976).

    [16] K V ORESHKINA, V D DUBROVIN, A I IGNAT’EV et al. The effect of silver on the optical, spectral-luminescent, and crystallization properties of bromide photo-thermo-refractive glasses. Optics & Spectroscopy, 123, 590-596(2017).

    [17] J LUMEAU, L GLEBOVA, L B GLEBOV. Absorption and scattering in photo-thermo-refractive glass induced by UV- exposure and thermal development. Optical Materials, 36, 621-627(2014).

    [18] STOICA MARTINA, KRACKER MICHAEL. CHRISTIAN RÜSSEL. Photoinduced formation of silver nanoparticles in a new Na2O/K2O/CaO/CaF2/Al2O3/ZnO/SiO2 photo thermal refractive glass: evidence of Ag-AgBr core shell structures. Opt. Mater. Express, 7, 4427-4434(2017).

    [19] A P NACHAROV, N V NIKONOROV, A I SIDOROV et al. Influence of ultraviolet irradiation and heat treatment on the morphology of silver nanoparticles in photothermorefractive glasses. Glass Physics and Chemistry, 34, 693-699(2008).

    [20] V D DUBROVIN, A I IGNATIEV, V M NEVEDOMSKII et al. The influence of synthesis conditions and ultraviolet irradiation on the morphology and concentration of silver nanocrystals in photothermo-refractive glasses. Glass Technology European Journal of Glass Science & Technology Part A, 55, 191-195(2014).

    [21] N V NIKONOROV, A A SAVIN, V A TSEKHOMSKII. Influence of ionizing radiation on the spectral properties of photo-thermo- refractive glass containing silver nanoparticles. Glass Physics & Chemistry, 39, 261-265(2013).

    [22] J M CLAUDIO, J P D GONZALEI, J F LIMA et al. Electron paramagnetic resonance (EPR) studies on the photo-thermo ionization process of photo-thermo-refractive glasses. Journal of Non Crystalline Solids, 452, 320-324(2016).

    [23] A SIMO, J POLTE, N PFANDER et al. Formation mechanism of silver nanoparticles stabilized in glassy matrices. Journal of the American Chemical Society, 134, 18824-18833(2012).

    Zhiyu ZHU, Yan JIAO, Chongyun SHAO, Dongbing HE, Lili HU. Effects of γ-Irradiation and Thermal Annealing on Photo-thermal-refractive Glass[J]. Journal of Inorganic Materials, 2021, 36(5): 521
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