• Photonics Research
  • Vol. 12, Issue 7, 1542 (2024)
Zhibo Hou1,2, Liao Chen1,2,*, Rongwu Liu1,2, Chi Zhang1,2..., Xiaojun Wu1,3 and Xinliang Zhang1,2,4|Show fewer author(s)
Author Affiliations
  • 1Wuhan National Laboratory for Optoelectronics and School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan 430074, China
  • 2Optics Valley Laboratory, Wuhan 430074, China
  • 3School of Electronic and Information Engineering, Beihang University, Beijing 100191, China
  • 4e-mail: xlzhang@mail.hust.edu.cn
  • show less
    DOI: 10.1364/PRJ.522518 Cite this Article Set citation alerts
    Zhibo Hou, Liao Chen, Rongwu Liu, Chi Zhang, Xiaojun Wu, Xinliang Zhang, "Enhanced terahertz vibrational absorption spectroscopy using an integrated high-Q resonator," Photonics Res. 12, 1542 (2024) Copy Citation Text show less
    References

    [1] Y. Peng, J. Huang, J. Luo. Three-step one-way model in terahertz biomedical detection. PhotoniX, 2, 12(2021).

    [2] S. W. Jun, Y. H. Ahn. Terahertz thermal curve analysis for label-free identification of pathogens. Nat. Commun., 13, 3470(2022).

    [3] W. Chen, Y. Peng, X. Jiang. Isomers identification of 2-hydroxyglutarate acid disodium salt (2HG) by terahertz time-domain spectroscopy. Sci. Rep., 7, 12166(2017).

    [4] S. J. Park, S. H. Cha, G. A. Shin. Sensing viruses using terahertz nano-gap metamaterials. Biomed. Opt. Express, 8, 3551-3558(2017).

    [5] X. Wu, L. Wang, Y. Peng. Quantitative analysis of direct oral anticoagulant rivaroxaban by terahertz spectroscopy. Analyst, 145, 3909-3915(2020).

    [6] J. Lyu, L. Huang, L. Chen. Review on the terahertz metasensor: from featureless refractive index sensing to molecular identification. Photon. Res., 12, 194-217(2024).

    [7] R. Damari, O. Weinberg, D. Krotkov. Strong coupling of collective intermolecular vibrations in organic materials at terahertz frequencies. Nat. Commun., 10, 3248(2019).

    [8] J. Li, H. Qu, J. Wang. Photonic Bragg waveguide platform for multichannel resonant sensing applications in the THz range. Biomed. Opt. Express, 11, 2476-2489(2020).

    [9] L. Hou, W. Shi, C. Dong. Probing trace lactose from aqueous solutions by terahertz time-domain spectroscopy. Spectrochim. Acta A, 246, 119044(2021).

    [10] M. E. Khani, D. P. Winebrenner, M. H. Arbab. Phase function effects on identification of terahertz spectral signatures using the discrete wavelet transform. IEEE Trans. Terahertz Sci. Technol., 10, 656-666(2020).

    [11] N. Nagai, R. Kumazawa, R. Fukasawa. Direct evidence of inter-molecular vibrations by THz spectroscopy. Chem. Phys. Lett., 413, 495-500(2005).

    [12] H. Chen, L. Wang, Y. Qu. Investigation of guanidine hydrochloride induced chlorophyll protein 43 and 47 denaturation in the terahertz frequency range. J. Appl. Phys., 102, 074701(2007).

    [13] S. Alfihed, J. F. Holzman, I. G. Foulds. Developments in the integration and application of terahertz spectroscopy with microfluidics. Biosens. Bioelectron., 165, 112393(2020).

    [14] D. Cheng, X. He, X. Huang. Terahertz biosensing metamaterial absorber for virus detection based on spoof surface plasmon polaritons. Int. J. RF Microwave Comput. Aided Eng., 28, e21448(2018).

    [15] R. T. Ako, A. Upadhyay, W. Withayachumnankul. Dielectrics for terahertz metasurfaces: material selection and fabrication techniques. Adv. Opt. Mater., 8, 1900750(2020).

    [16] S. Walia, C. M. Shah, P. Gutruf. Flexible metasurfaces and metamaterials: a review of materials and fabrication processes at micro- and nano-scales. Appl. Phys. Rev., 2, 011303(2015).

    [17] A. Keshavarz, Z. Vafapour. Sensing avian influenza viruses using terahertz metamaterial reflector. IEEE Sens. J., 19, 5161-5166(2019).

    [18] H. T. Chen, J. F. O’Hara, A. K. Azad. Manipulation of terahertz radiation using metamaterials. Laser Photon. Rev., 5, 513-533(2011).

    [19] W. Xu, L. Xie, Y. Ying. Mechanisms and applications of terahertz metamaterial sensing: a review. Nanoscale, 9, 13864-13878(2017).

    [20] D.-K. Lee, J. H. Kang, J. Kwon. Nano metamaterials for ultrasensitive terahertz biosensing. Sci. Rep., 7, 8146(2017).

    [21] J. Lyu, S. Shen, L. Chen. Frequency selective fingerprint sensor: the terahertz unity platform for broadband chiral enantiomers multiplexed signals and narrowband molecular AIT enhancement. PhotoniX, 4, 28(2023).

    [22] B. Han, Z. Han, J. Qin. A sensitive and selective terahertz sensor for the fingerprint detection of lactose. Talanta, 192, 1-5(2019).

    [23] M. Walther, M. R. Freeman, F. A. Hegmann. Metal-wire terahertz time-domain spectroscopy. Appl. Phys. Lett., 87, 261107(2005).

    [24] J. F. O’Hara, W. Withayachumnankul, I. Al-Naib. A review on thin-film sensing with terahertz waves. J. Infrared Millim. Terahertz Waves, 33, 245-291(2012).

    [25] P. Padhy, P. K. Sahu, R. Jha. Metal wire waveguide based all plasmonic refractive index sensor for terahertz frequencies. Sens. Actuators B, 225, 115-120(2016).

    [26] L. Ye, Y. Xiao, N. Liu. Plasmonic waveguide with folded stubs for highly confined terahertz propagation and concentration. Opt. Express, 25, 898-906(2017).

    [27] X. Li, J. Song, J. X. Zhang. Design of terahertz metal-dielectric-metal waveguide with microfluidic sensing stub. Opt. Commun., 361, 130-137(2016).

    [28] H. Amarloo, S. Safavi-Naeini. Enhanced on-chip terahertz vibrational absorption spectroscopy using evanescent fields in silicon waveguide structures. Opt. Express, 29, 17343-17352(2021).

    [29] H. Amarloo, S. Safavi-Naeini. Terahertz slot dielectric waveguide implemented on the silicon-BCB-quartz platform. IEEE Trans. Terahertz Sci. Technol., 11, 310-317(2021).

    [30] M. Sun, Z. Han. Highly sensitive terahertz fingerprint sensing based on the quasi-guided modes in a distorted photonic lattice. Opt. Express, 31, 10947-10954(2023).

    [31] W. Bogaerts, P. De Heyn, T. Van Vaerenbergh. Silicon microring resonators. Laser Photon. Rev., 6, 47-73(2012).

    [32] D. W. Vogt, A. H. Jones, R. Leonhardt. Thermal tuning of silicon terahertz whispering-gallery mode resonators. Appl. Phys. Lett., 113, 011101(2018).

    [33] S. Yuan, L. Chen, Z. Wang. Tunable high-quality Fano resonance in coupled terahertz whispering-gallery-mode resonators. Appl. Phys. Lett., 115, 201102(2019).

    [34] S. Zhou, X. Tu, Q. Wu. Photonics-inspired terahertz whispering gallery mode resonator waveguide on silicon platform. Appl. Phys. Lett., 119, 171103(2021).

    [35] R. Gandhi, R. Leonhardt, D. W. Vogt. Microresonator frequency reference for terahertz precision sensing and metrology. IEEE Trans. Terahertz Sci. Technol., 12, 70-74(2022).

    [36] D. W. Vogt, A. H. Jones, T. A. Haase. Subwavelength thick ultrahigh-Q terahertz disc microresonators. Photon. Res., 8, 1183-1188(2020).

    [37] D. W. Vogt, A. H. Jones, R. Leonhardt. Terahertz gas-phase spectroscopy using a sub-wavelength thick ultrahigh-Q microresonator. Sensors, 20, 3005(2020).

    [38] N. Navaratna, Y. J. Tan, A. Kumar. On-chip topological THz biosensors. Appl. Phys. Lett., 123, 033705(2023).

    [39] Z. Hou, S. Yuan, W. Deng. Crystalline hydrate dehydration sensing based on integrated terahertz whispering gallery mode resonators. Sensors, 22, 9116(2022).

    [40] Z. Wang, S. Yuan, G. Dong. On-chip single-mode high-Q terahertz whispering gallery mode resonator. Opt. Lett., 44, 2835-2838(2019).

    [41] M. Gupta, R. Singh. Terahertz sensing with optimized Q/Veff metasurface cavities. Adv. Opt. Mater., 8, 1902025(2020).

    [42] A. Kumar, M. Gupta, P. Pitchappa. Topological sensor on a silicon chip. Appl. Phys. Lett., 121, 011101(2022).

    [43] A. Kumar, M. Gupta, P. Pitchappa. Active ultrahigh-Q (0.2 × 106) THz topological cavities on a chip. Adv. Mater., 34, 2202370(2022).

    [44] Y. Wu, B. Duan, C. Li. Multimode sensing based on optical microcavities. Front. Optoelectron., 16, 29(2023).

    [45] J. M. Schmitt. Simple photon diffusion analysis of the effects of multiple scattering on pulse oximetry. IEEE Trans. Bio-med. Eng., 38, 1194-1203(1991).

    [46] C. Yeh, K. Ha, S. B. Dong. Single-mode optical waveguides. Appl. Opt., 18, 1490-1504(1979).

    [47] L. Zhang, S. Hong, Y. Wang. Ultralow-loss silicon photonics beyond the singlemode regime. Laser Photon. Rev., 16, 2100292(2022).

    [48] L. Zhang, L. Jie, M. Zhang. Ultrahigh-Q silicon racetrack resonators. Photon. Res., 8, 684-689(2020).

    Zhibo Hou, Liao Chen, Rongwu Liu, Chi Zhang, Xiaojun Wu, Xinliang Zhang, "Enhanced terahertz vibrational absorption spectroscopy using an integrated high-Q resonator," Photonics Res. 12, 1542 (2024)
    Download Citation