[1] Li X, Qiu T, Zhang J H et al. Terahertz field-induced ferroelectricity in quantum paraelectric SrTiO3[J]. Science, 364, 1079-1082(2019).
[2] Ajito K, Ueno Y, Kim J Y et al. Capturing the freeze-drying dynamics of NaCl nanoparticles using THz spectroscopy[J]. Journal of the American Chemical Society, 140, 13793-13797(2018).
[3] Grechko M, Hasegawa T, D’Angelo F et al. Coupling between intra- and intermolecular motions in liquid water revealed by two-dimensional terahertz-infrared-visible spectroscopy[J]. Nature Communications, 9, 885(2018).
[4] Xu D G, Wang Y Y, Hu C H et al. Optical terahertz radiation sources and terahertz application in traumatic brain injury[J]. Chinese Journal of Lasers, 48, 1914002(2021).
[5] Zhang Z Z, Wang C, Tan Z Y et al. Terahertz transceivers for 6G wireless communication[J]. Radio Communications Technology, 47, 772-779(2021).
[6] Lu X J, Ge H Y, Jiang Y Y et al. Application progress of terahertz technology in agriculture detection[J]. Spectroscopy and Spectral Analysis, 42, 3330-3335(2022).
[7] Deng Q Z, Zhang H Q, Zhang L et al. Terahertz photonic communication technologies[J]. Journal of Terahertz Science and Electronic Information Technology, 20, 790-803(2022).
[8] Guerboukha H, Nallappan K, Skorobogatiy M. Toward real-time terahertz imaging[J]. Advances in Optics and Photonics, 10, 843(2018).
[9] Zhan H L, Chen M X, Zhao K et al. The mechanism of the terahertz spectroscopy for oil shale detection[J]. Energy, 161, 46-51(2018).
[10] Miao X Y, Liu X C, Chen M X et al. Terahertz spectral characteristics of rocks with different lithologies[J]. Spectroscopy and Spectral Analysis, 41, 1314-1319(2021).
[11] Wilke I, Ramanathan V, La Chance J et al. Characterization of the terahertz frequency optical constants of montmorillonite[J]. Applied Clay Science, 87, 61-65(2014).
[12] Janek M, Bugár I, Lorenc D et al. Terahertz time-domain spectroscopy of selected layered silicates[J]. Clays and Clay Minerals, 57, 416-424(2009).
[13] Maimaitiming A, Xiong W, Guo X J et al. Study on tearhertz spectroscopy of hotan jade[J]. Spectroscopy and Spectral Analysis, 30, 2597-2600(2010).
[14] Chen C, Liu J S, Yao J Q et al. Spectroscopy studies on several kinds of sedimentary rocks in the terahertz range[J]. Scientia Sinica: Physica, Mechanica & Astronomica, 45, 084206(2015).
[15] Bao R M, Meng Q, Wang C L et al. Terahertz spectroscopic characteristics of the geological diagenetic and metallogenic evolution[J]. Scientia Sinica: Physica, Mechanica & Astronomica, 45, 084203(2015).
[16] Gao S C, Yuan Z W, Zhan H L et al. Terahertz spectral features and quantitative analysis of minerals in Ordos Basin Yanchang Formation[J]. Scientia Sinica: Physica, Mechanica & Astronomica, 46, 034202(2016).
[17] Scales J A, Batzle M. Millimeter wave spectroscopy of rocks and fluids[J]. Applied Physics Letters, 88, 062906(2006).
[18] Deng J J, Ornik J, Zhao K et al. Recognition of coal from other minerals in powder form using terahertz spectroscopy[J]. Optics Express, 28, 30943-30951(2020).
[19] Hao S B, Huang H C, Ma Y Y et al. Sensitive characterizations of natural dolomite by terahertz time-domain spectroscopy[J]. Optics Communications, 456, 124524(2020).
[20] Bao R M, Qin F K, Chen R et al. Optical detection of oil bearing in reservoir rock: terahertz spectroscopy investigation[J]. IEEE Access, 7, 121755-121759(2019).
[21] Han D, Jeong H, Song Y et al. Lattice vibrations of natural seraphinite gemstone probed by terahertz time-domain spectroscopy[J]. IEEE Transactions on Terahertz Science and Technology, 5, 1021-1027(2015).
[22] Ma Y Y. Research on silicate minerals by terahertz time domain spectroscopy[D](2020).
[23] Zhang X L. Study on the properties of plasmons, optical phonons and polaritons in semiconductor low-dimensional structures[D](2004).
[24] Liang J L, Sun X M, Xu L et al. Structural hydroxyl of rutile in UHP metamorphic rocks from Chinese continental scientific drilling project (CCSD) and areas nearby and its implication for geodynamics[J]. Geological Review, 53, 267-272(2007).
[25] Jiang S H, Wang Z M, Chen R X et al. Water of garnet in eclogite from jinheqiao area in the dabie orogen[J]. Earth Science, 45, 1168-1186(2020).
[26] Hwang H, Seoung D, Lee Y et al. A role for subducted super-hydrated kaolinite in Earth’s deep water cycle[J]. Nature Geoscience, 10, 947-953(2017).
[27] Yan W, Liu X. On the quantification methods of water in nominally anhydrous minerals: their strengths and weaknesses, with emphasis on FTIR method[J]. Bulletin of Mineralogy, Petrology and Geochemistry, 40, 425-447(2021).
[28] Yang X Z, Xia Q K, Yu H M et al. The possible effect of hydrogen on the high electrical conductivity in the lower continental crust[J]. Advances in Earth Science, 21, 31-38(2006).
[29] Zhang F, Hu Z L, Hou X L et al. Feature selection of near-infrared spectra of rock with different water contents[J]. Spectroscopy and Spectral Analysis, 39, 3395-3402(2019).
[30] Lee G J, Kim S, Kwon T H. Effect of moisture content and particle size on extinction coefficients of soils using terahertz time-domain spectroscopy[J]. IEEE Transactions on Terahertz Science and Technology, 7, 529-535(2017).
[31] Oh G H, Kim H S, Park D W et al. In-situ monitoring of moisture diffusion process for wood with terahertz time-domain spectroscopy[J]. Optics and Lasers in Engineering, 128, 106036(2020).
[32] Ma Y Y, Huang H C, Hao S B et al. Investigation of copper sulfate pentahydrate dehydration by terahertz time-domain spectroscopy[J]. Chinese Physics B, 28, 060702(2019).
[33] Ma Y Y, Huang H C, Hao S B et al. Insights into the water status in hydrous minerals using terahertz time-domain spectroscopy[J]. Scientific Reports, 9, 9265(2019).
[34] Siemion A, Siemion A, Makowski M et al. Diffractive paper lens for terahertz optics[J]. Optics Letters, 37, 4320-4322(2012).
[35] Squires A D, Constable E, Lewis R A. 3D printed terahertz diffraction gratings and lenses[J]. Journal of Infrared, Millimeter, and Terahertz Waves, 36, 72-80(2015).
[36] Zhang Z Q, Wei X L, Liu C M et al. Rapid fabrication of terahertz lens via three-dimensional printing technology[J]. Chinese Optics Letters, 13, 022201(2015).
[37] Han D, Lee K, Lim J et al. Terahertz lens made out of natural stone[J]. Applied Optics, 52, 8670-8675(2013).
[38] Hao S B, Zhang Z L, Ma Y Y et al. Terahertz lens fabricated by natural dolomite[J]. Chinese Physics Letters, 36, 124205(2019).
[39] Sommer S, Koch M, Adams A. Terahertz time-domain spectroscopy of plasticized poly(vinyl chloride)[J]. Analytical Chemistry, 90, 2409-2413(2018).
[40] Farman N, Mumtaz M, Mahmood A et al. Investigation of optical and dielectric properties of polyvinyl chloride and polystyrene blends in terahertz regime[J]. Optical Materials, 99, 109534(2020).
[41] Zhang T, Huang H C, Zhang Z L et al. Sensitive characterizations of polyvinyl chloride using terahertz time-domain spectroscopy[J]. Infrared Physics & Technology, 118, 103878(2021).
[42] Zhang T, Huang H C, Zhang Z L et al. Detection of plastics based on terahertz time-domain spectroscopy[J]. Chinese Journal of Lasers, 49, 1311001(2022).
[43] Yang J, Qiu J F, Jiang H et al. The application of terahertz technology in paintings[J]. Journal of Infrared and Millimeter Waves, 41, 218-229(2022).
[44] Li C Y, Shi N C, Li G H et al. Study of the traditional Chinese pigments by terahertz time-domain and Fourier-transform infrared spectroscopy[J]. Proceedings of SPIE, 10459, 1045902(2017).
[45] Hong T, Choi K, Ha T et al. Terahertz time-domain and Fourier-transform infrared spectroscopy of traditional Korean pigments[J]. Journal of the Korean Physical Society, 64, 727-731(2014).
[46] Yang Y P, Zhai D W, Zhang Z W et al. THz spectroscopic identification of red mineral pigments in ancient Chinese artworks[J]. Journal of Infrared, Millimeter, and Terahertz Waves, 38, 1232-1240(2017).
[47] Cheng H, Huang H C, Yang M F et al. Characterization of the remediation of chromium ion contamination with bentonite by terahertz time-domain spectroscopy[J]. Scientific Reports, 12, 11149(2022).
[48] Mu S Y, Yang M H, Chen Q Q et al. Study on detection and analysis of soil pollutants by terahertz spectroscopy[J]. Experimental Technology and Management, 38, 89-93(2021).
[49] Wu Z K, Bao R M, Wang F et al. Application of terahertz time-domain spectroscopy in fluid inclusion study[J]. Spectroscopy and Spectral Analysis, 37, 3689-3692(2017).
[50] Leng W X, Li Q Y, Bao R M et al. Characterizing the rock geological time by terahertz spectrum[J]. Science China Physics, Mechanics & Astronomy, 62, 014221(2019).
[51] Kawase K, Ogawa Y, Watanabe Y et al. Non-destructive terahertz imaging of illicit drugs using spectral fingerprints[J]. Optics Express, 11, 2549-2554(2003).
[52] Hao S B, Huang H C, Ma Y Y et al. Characterizations of the Calamine Tablets by terahertz time-domain spectroscopy[J]. Optik, 187, 278-284(2019).
[53] Tang W C, Zhang Z L, Xiao K et al. Terahertz frequency characterization of anisotropic structure of tourmaline[J]. Frontiers of Optoelectronics, 10, 409-413(2017).