
参考文献
[1] HERSCHEL W. II. Experiments on the refrangibility of the invisible rays of the sun[J]. The Philosophical Magazine, 2009, 8(29): 9-15.
[2] ROGALSKI A. History of infrared detectors[J]. Opto-Electronics Review, 2012, 20(3): 279-308.
[3] SEEBECK T J. Magnetische polarisation der metalle und erze durch temperatur-differenz[M]. Berlin: Verlag Von Wilhelm Engelmann, 1895.
[4] LANGLEY S P. The bolometer and radiant Energy[J]. Proceedings of the American Academy of Arts and Sciences, 1880, 16: 342-358.
[5] BARR E S. The infrared pioneers—III. Samuel pierpont Langley[J]. Infrared Physics, 1963, 3(4): 195-206.
[6] DENINGER A J, ROGGENBUCK A, SCHINDLER S, et al. 2.75 THz tuning with a triple-DFB laser system at 1550 nm and InGaAs photomixers[J]. Journal of Infrared, Millimeter, and Terahertz Waves, 2015, 36(3): 269-277.
[7] LI P Y, LIU S J, CHEN X H, et al. Spintronic terahertz emission with manipulated polarization (STEMP)[J]. Frontiers of Optoelectronics, 2022, 15(1): 15.
[8] CHEN X H, WU X J, SHAN S Y, et al. Generation and manipulation of chiral broadband terahertz waves from cascade spintronic terahertz emitters[J]. Applied Physics Letters, 2019, 115(22): 221104.
[9] FANG Z J, WANG H T, WU X J, et al. Nonlinear terahertz emission in the three-dimensional topological insulator Bi2Te3 by terahertz emission spectroscopy [J]. Applied Physics Letters, 2019, 115(19): 191102.
[10] KONG D Y, WU X J, WANG B, et al. Broadband spintronic terahertz emitter with magnetic‐field manipulated polarizations[J]. Advanced Optical Materials, 2019, 7(20): 1900487.
[11] WANG B, SHAN S Y, WU X J, et al. Picosecond nonlinear spintronic dynamics investigated by terahertz emission spectroscopy[J]. Applied Physics Letters, 2019, 115(12): 121104.
[12] KONG D Y, WU X J, WANG B, et al. High resolution continuous wave terahertz spectroscopy on solid-state samples with coherent detection[J]. Optics Express, 2018, 26(14): 17964-17976.
[13] LIU H B, ZHONG H, KARPOWICZ N, et al. Terahertz spectroscopy and imaging for defense and security applications[J]. Proceedings of the IEEE, 2007, 95(8): 1514-1527.
[14] MCCLATCHEY K, REITEN M, CHEVILLE R. Time resolved synthetic aperture terahertz impulse imaging[J]. Applied Physics Letters, 2001, 79(27): 4485-4487.
[15] WANG S, ZHANG X C. Pulsed terahertz tomography[J]. Journal of Physics D: Applied Physics, 2004, 37(4): R1.
[16] LI O, HE J, ZENG K, et al. Integrated sensing and communication in 6G a prototype of high resolution THz sensing on portable device[C]//2021 Joint European Conference on Networks and Communications & 6G Summit (EuCNC/6G Summit), 2021: 544-549.
[17] CHEVILLE R, GRISCHKOWSKY D. Time domain terahertz impulse ranging studies[J]. Applied Physics Letters, 1995, 67(14): 1960-1962.
[18] IWASZCZUK K, HEISELBERG H, JEPSEN P U. Terahertz radar cross section measurements[J]. Optics Express, 2010, 18(25): 26399-26408.
[19] CHEN F, ZHU Y, LIU S, et al. Ultrafast terahertz-field-driven ionic response in ferroelectric BaTiO3[J]. Physical Review B, 2016, 94(18): 180104.
[20] CHEN S L, CHANG Y C, ZHANG C, et al. Efficient real-time detection of terahertz pulse radiation based on photoacoustic conversion by carbon nanotube nanocomposite[J]. Nature Photonics, 2014, 8(7): 537-542.
[21] KAMPFRATH T, TANAKA K, NELSON K A. Resonant and nonresonant control over matter and light by intense terahertz transients[J]. Nature Photonics, 2013, 7(9): 680-690.
[22] KUBACKA T, JOHNSON J A, HOFFMANN M C, et al. Large-amplitude spin dynamics driven by a THz pulse in resonance with an electromagnon[J]. Science, 2014, 343(6177): 1333-1336.
[23] CHEN F, GOODFELLOW J, LIU S, et al. Ultrafast terahertz gating of the polarization and giant nonlinear optical response in BiFeO3 thin films[J]. Advanced Materials, 2015, 27(41): 6371-6375.
[24] BAIERL S, MENTINK J H, HOHENLEUTNER M, et al. Terahertz-driven nonlinear spin response of antiferromagnetic nickel oxide[J]. Physical Review Letters, 2016, 117(19): 197201.