| [1]Zhang M S, Ju W, Cheng Z Y, Ren H D.FTIR spectral wavenumber optimization for ethylene based on IRIV-SA[J].Chinese Journal of Quantum Electronics, 2023, 40(3):383-391[2]张梦思, 鞠薇, 程志友, 任慧东.基于 - 的乙烯 光谱波数优选[J].量子电子学报, 2023, 40(3):383-391[3]Chen Y Z, Hu R, Xu L, et al.Study on Anti-vibration Performance of Vehicle-Mounted Potable FTIR System[J].Chinese Journal of Quantum Electronics, 2020, 37(1):7-14[4]陈育泽, 胡荣, 徐亮等.车载便携式系统抗振性能研究[J].量子电子学报, 2020, 37(01):9-14[5]Hu K, Xu L, Yang W F, et al.Optical design of solar spectrum ground-based tracking remote sensing system[J].Chinese Journal of Quantum Electronics, 2021, 38(3):290-300[6]胡凯, 徐亮, 杨伟锋等.太阳光谱地基跟踪遥感系统光学设计[J].量子电子学报, 2021, 38(03):290-300[7]Jiang T, Tong J J, Gao M G, et al.Weak Interference Signal Detection Circuit Design Based on Fourier Transform Infrared Spectrometer[J].Chinese Journal of Quantum Electronics, 2019, 36(6):677-683[8]江婷, 童晶晶, 高闽光等.傅里叶变换红外光谱仪微弱干涉信号检测电路设计[J].量子电子学报, 2019, 36(06):677-683[9]Yahya OM, Mohammed SJ, Sheat AM.Synthesis and Characterization of some Substituted Octa-hedroquinazoline using Ultrasound Technique[J].Egyptian Journal of Chemistry, 2022, 65(12):73-78[10]Abdel-Maksoud G, Ghozy H, Ezzat R, et al.Evaluation of the efficiency of sodium alginate for the consolidation of archeological bones[J].Egyptian Journal of Chemistry, 2023, 66(2):357-366[11]Kim MJ, Istianah N, So BR, et al.Preparation of High-Solid Microfibrillated Cellulose from Gelidium amansii and Characterization of Its Physiochemical and Biological Properties[J].Journal of Microbiology and Biotechnology, 2022, 32(12):1589-1598[12]Hu R, Xu L, Li X X, et al.Optical design of near-infrared spectroscopy detection system for drug nondestructive analysis[J].Chinese Journal of Quantum Electronics, 2017, 34(3):264-271[13]胡荣, 徐亮, 李相贤, 等.用于药品无损分析的近红外光谱检测系统光学设计[J].量子电子学报, 2017, 34(3):264-271[14]Fang B, Zhao W X, Yang N N.Development and application of optical multi-pass cells[J].Chinese Journal of Quantum Electronics, 2021, 38(05):617-632[15]方波, 赵卫雄, 杨娜娜等.光学多通池的研制及应用[J].量子电子学报, 2021, 38(05):617-632[16] Zhang Z X.Design and Realization of Variable Optical Path Length Multi-Pass cell System[D]. Shandong University, 2021.[17]张振玺.可变光程多次反射池系统的设计与实现[D].山东大学, 2021.[18] Shao L G.High-precision Trace Gases Measurement Based on Midinfrared Laser Absorption Spectroscopy [D]. University of Science and Technology of China, 2023.[19]邵李刚.中红外激光吸收光谱痕量气体高灵敏检测技术及应用研究[D].中国科学技术大学, 2023.[20]White, John U.Long Optical Paths of Large Aperture[J].Journal of the Optical Society of America, 1942, 32(5):285-288[21]Grassi L, Guzzi R.Theoretical and practical consideration of the construction of a zero-geometric-loss multiple-pass cell based on the use of monolithic multiple-face retroreflectors[J].Applied Optics, 2001, 40(33):6062-6071[22]Herriott D R, Schulte H J.Folded Optical Delay Lines[J].Applied Optics, 1965, 4(8):883-&[23]Herriott D, Kogelnik H, Kompfner R.Off-Axis Paths in Spherical Mirror Interferometers[J].Applied Optics, 1964, 3(4):523-&[24]Robert C.Simple,stable,and compact multiple-reflection optical cell for very long optical paths[J].Applied Optics, 2007, 46(22):5408-5418[25]Gui R, Dong L, Wu H, et al.Three-Dimensional Printed Miniature Fiber-Coupled Multipass Cells with Dense Spot Patterns for ppb-Level Methane Detection Using a Near-IR Diode Laser[J].Analytical Chemistry, 2020, 92(19):13034-13041[26]Krzempek K, Jahjah M, Lewicki R, et al.CW DFB RT diode laser-based sensor for trace-gas detection of ethane using a novel compact multipass gas absorption cell[J].Applied physics, B. Lasers and optics, 2013, B112(4):461-465[27]McManus J B, Zahniser M S, Nelson D D.Dual quantum cascade laser trace gas instrument with astigmatic Herriott cell at high pass number[J].Applied optics, 2011, 50(4):A74-A85[28]Mu Y J, Chen Y, Yu J, et al.Study and design of a king of Multi-Pass White Cell[J].Optical Technique, 2014, 40(04):345-348[29]穆永吉, 陈远, 余俊等.一种多次反射怀特池的研究与设计[J].光学技术, 2014, 40(04):345-348 |