[2] SEIMETZ M. Laser linewidth limitations for optical systems with high-order modulation employing feed forward digital carrier phase estimation[C]//OFC/NFOEC 2008—2008 Conference on Optical Fiber Communication/National Fiber Optic Engineers Conference. San Diego, CA, USA. IEEE, 2008: 1–3.
[3] TANG L W, JIA H X, SHAO S, et al. Hybrid integrated low-noise linear chirp frequency-modulated continuous-wave laser source based on self-injection to an external cavity[J]. Photon Res, 2021, 9(10):1948.
[4] LABAZIEWICZ J, RICHERME P, BROWN K R, et al. Compact,filtered diode laser system for precision spectroscopy[J]. Opt Lett,2007, 32(5): 572–574.
[5] MILLS P, PLASTOW R. Single-mode operation of 1.55 μm semiconductor lasers using a volume holographic grating[J]. Electron Lett, 1985, 21(15): 648.
[6] IVANOV S A, NIKONOROV N V, IGNAT’EV A I, et al. Narrowing of the emission spectra of high-power laser diodes with a volume Bragg grating recorded in photo-thermo-refractive glass[J].Semiconductors, 2016, 50(6): 819–823.
[7] BROWN A, LEISHER P, FANNING G, et al. Progress in commercial wavelength-stabilized high-brightness diode sources suitable for pumping Yb-doped fiber lasers[C]//Laser Technology for Defense and Security VII", "SPIE Proceedings. Orlando, Florida, USA. SPIE, 2011:80390O.
[8] HEMENWAY M, BAO L, KANSKAR M, et al. Performance improvements to wavelength stabilized high power 885nm diode laser modules[C]//SPIE LASE. Proc SPIE 9730, Components and Packaging for Laser Systems II, San Francisco, California, USA. 2016, 9730:107–116.
[11] HAN J L, ZHANG J, SHAN X N, et al. Tunable ultra-narrow linewidth diode laser for multiple metastable rare gas pumping[J]. Opt Express, 2023, 31(8): 13065–13072.
[12] EFIMOV O M, GLEBOV L B, GLEBOVA L N, et al. High-efficiency Bragg gratings in photothermorefractive glass[J]. Appl Opt, 1999,38(4): 619–627.
[13] SOUZA G P, FOKIN V M, BAPTISTA C A, et al. Effect of bromine on NaF crystallization in photo-thermo-refractive glass[J]. J Am Ceram Soc, 2011, 94(9): 2906–2911.
[14] GLEBOVA L, LUMEAU J, KLIMOV M, et al. Role of bromine on the thermal and optical properties of photo-thermo-refractive glass[J]. J Non Cryst Solids, 2008, 354(2–9): 456–461.
[15] ZHU Z Y, HE D B, HU L L. Effect of ultraviolet exposure and thermal treatment on NaF micro-crystallization mechanism in photo-thermorefractive glasses[J]. J Non Cryst Solids, 2023, 621: 122632.
[16] LUMEAU J, GLEBOVA L, GLEBOV L B. Influence of UV-exposure on the crystallization and optical properties of photo-thermo-refractive glass[J]. J Non Cryst Solids, 2008, 354(2–9): 425–430.
[17] LUMEAU J, ZANOTTO E D. A review of the photo-thermal mechanism and crystallization of photo-thermo-refractive (PTR) glass[J]. Int Mater Rev, 2017, 62(6): 348–366.
[18] GE Z Y, XIONG B X, MO D H, et al. Crystallization heat treatments for the fabrication of volume Bragg gratings based on photo-thermorefractive glass[J]. Opt Mater, 2023, 145: 114428.
[19] NASSER K, IVANOV S, KHARISOVA R, et al. A novel photo-thermo-refractive glass with chlorine instead of bromine for holographic application[J]. Ceram Int, 2022, 48(18): 26750–26757.
[20] KOMPAN F, VENUS G, GLEBOVA L, et al. Photo-thermo-refractive glass with sensitivity to visible and near IR radiation[J]. Opt Mater Express, 2016, 6(12): 3881.
[21] DUBROVIN V D, IGNATIEV A I, NIKONOROV N V. Chloride photo-thermo-refractive glasses[J]. Opt Mater Express, 2016, 6(5):1701.
[24] EFIMOV A M, IGNATIEV A I, NIKONOROV N V, et al.Quantitative UV–VIS spectroscopic studies of photo-thermo-refractive glasses. I. Intrinsic, bromine-related, and impurity-related UV absorption in photo-thermo-refractive glass matrices[J]. J Non Cryst Solids, 2011, 357(19/20): 3500–3512.
[25] GE Z Y, XIONG B X, CHEN X P, et al. Effect of the SiO2/Na2O ratios on the structure and crystallization properties of photo-thermorefractive glass[J]. Ceram Int, 2023, 49(23): 39059–39069.
[26] YUE Y, LI H, CAO X H, et al. Applied in multilayer ceramic capacitors preparation of B2O3-ZnO-SiO2 glass and sintering densification of copper terminal electrode[J]. J Wuhan Univ Technol Mater Sci,2023, 38(5): 960–968.
[27] DING K, CHEN N, DU G P, et al. Preparation, structures, thermal properties and sintering behaviors of B2O3-SiO2-ZnO-BaO-Al2O3glass[J]. J Wuhan Univ Technol Mater Sci Ed, 2016, 31(6):1323–1328.
[28] IVANOV S A, IGNATIEV A I, NIKONOROV N V, et al.Characteristics of PTR glass with novel modified composition[J].Radiophys Quantum Electron, 2015, 57(8): 659–664.