[1]Akyildiz I F, Han C, Hu Z, et al.Terahertz band communication: An old problem revisited and research directions for the next decade[J].IEEE Transactions on Communications, 2022, 70(6):4250-4285[2]Kürner T, Mittleman D M, Nagatsuma T.Introduction to thz communications[M]//THz Communications. Springer, Cham, 2022: 1-12.[3]Alexiou A, Andreev S, Fodor G, et al.THz communications: A catalyst for the wireless future[J].IEEE Communications Magazine, 2020, 58(11):12-13[4]Nagatsuma T, Ducournau G, Renaud C C.Advances in terahertz communications accelerated by photonics[J].Nature Photonics, 2016, 10(6):371-379[5]Xu W, Xie L, Zhu J, et al.Terahertz biosensing with a graphene-metamaterial heterostructure platform[J].Carbon, 2019, 141(0):247-252[6]Ji Y B, Park C H, Kim H, et al.Feasibility of terahertz reflectometry for discrimination of human early gastric cancers[J].Biomedical optics express, 2015, 6(4):1398-1406[7]Woodward R M, Wallace V P, Arnone D D, et al.Terahertz pulsed imaging of skin cancer in the time and frequency domain[J].Journal of Biological Physics, 2003, 29(2):257-259[8]Ashworth P C, Pickwell-MacPherson E, Provenzano E, et al.Terahertz pulsed spectroscopy of freshly excised human breast cancer[J].Optics express, 2009, 17(15):12444-12454[9]Li D, Yang Z, Fu A, et al.Detecting melanoma with a terahertz spectroscopy imaging technique[J].Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 2020, 234(0):118229-118229[10]Bowman T, Chavez T, Khan K, et al.Pulsed terahertz imaging of breast cancer in freshly excised murine tumors[J].Journal of biomedical optics, 2018, 23(2):026004-026004[11]Sim Y C, Park J Y, Ahn K M, et al.Terahertz imaging of excised oral cancer at frozen temperature[J].Biomedical optics express, 2013, 4(8):1413-1421[12]Bajwa N, Au J, Jarrahy R, et al.Non-invasive terahertz imaging of tissue water content for flap viability assessment[J].Biomedical optics express, 2017, 8(1):460-474[13]Stantchev R I, Yu X, Blu T, et al.Real-time terahertz imaging with a single-pixel detector[J].Nature communications, 2020, 11(1):1-8[14]Stantchev R I, Sun B, Hornett S M, et al.Noninvasive,near-field terahertz imaging of hidden objects using a single-pixel detector[J].Science advances, 2016, 2(6):e1600190-e1600190[15]Zhang B, He T, Shen J, et al.Conjugated polymer-based broadband terahertz wave modulator[J].Optics letters, 2014, 39(21):6110-6113[16]Chen H T, Padilla W J, Zide J M O, et al.Active terahertz metamaterial devices[J].Nature, 2006, 444(7119):597-600[17]Liu, X, et al.Ultrabroadband electrically controllable terahertz modulation based on GaAs Schottky diode structure[J].APL Photonics, 2021, 6(11):111301-111301[18]Chen H T, et al.Electronic control of extraordinary terahertz transmission through subwavelength metal hole arrays.[J]. Optics Express, 2008, 16(11):741-7648[19]Zhang Y, Qiao S, Liang S, et al.Gbps terahertz external modulator based on a composite metamaterial with a double-channel heterostructure[J].Nano letters, 2015, 15(5):3501-3506[20]Shi S F, Zeng B, Han H L, et al.Optimizing broadband terahertz modulation with hybrid graphenemetasurface structures[J].Nano letters, 2015, 15(1):372-377[21]Sun Y, Degl’Innocenti R, Ritchie D A, et al.Graphene-loaded metal wire grating for deep and broadband THz modulation in total internal reflection geometry[J].Photonics Research, 2018, 6(12):1151-1157[22]Liu X, Jia M, Fan S, et al.Deep THz modulation at Fabry-Perot resonances using graphene in periodic microslits[J].Optics Express, 2021, 29(4):6199-6208[23]Novitsky A, Ivinskaya A M, Zalkovskij M, et al.Non-resonant terahertz field enhancement in periodically arranged nanoslits[J].Journal of Applied Physics, 2012, 112(7):074318-074318 |