91 91 L. Zhu, X. Wei, J. Wang, et al. (2014). Experimental demonstration of basic functionalities for 0.1‐THz orbital angular momentum (OAM) communications, Optical Fiber Communication Conference, OSA Technical Digest (online) (Optical Society of America, 2014), paper M3K.
92 92 Byun, W.‐J., Lee, Y.‐S., Kim, B.S. et al. (2015). Simple generation of orbital angular momentum modes with azimuthally deformed Cassegrain subreflector. Electronics Letters 51 (19): 1480–1482.
93 93 Mari, E., Spinello, F., Oldoni, M. et al. (2014). Near‐field experimental verification of separation of OAM channels. IEEE Antennas and Wireless Propagation Letters 14: 556–558.
94 94 Byun, W.J., Kim, K.S., Kim, B.S. et al. (2016). Multiplexed Cassegrain reflector antenna for simultaneous generation of three orbital angular momentum (OAM) modes. Scientific Reports 6: 27339.
95 95 Cheng, L., Hong, W., and Hao, Z.‐C. (2014). Generation of electromagnetic waves with arbitrary orbital angular momentum modes. Scientific Reports 4 (1): 1–5.
96 96 Qin, F., Wan, L., Li, L. et al. (2018). A transmission metasurface for generating OAM beams. IEEE Antennas and Wireless Propagation Letters 17 (10): 1793–1796.
97 97 Hui, X., Zheng, S., Hu, Y. et al. (2015). Ultralow reflectivity spiral phase plate for generation of millimeter‐wave OAM beam. IEEE Antennas and Wireless Propagation Letters 14: 966–969.
98 98 Chen, Y., Zheng, S., Li, Y. et al. (2015). A flat‐lensed spiral phase plate based on phase‐shifting surface for generation of millimeter‐wave OAM beam. IEEE Antennas and Wireless Propagation Letters 15: 1156–1158.
99 99 A. Bennis, R. Niemiec, C. Brousseau, et al. (2013). Flat plate for OAM generation in the millimeter band, 2013 7th European Conference on Antennas and Propagation (EuCAP). IEEE, pp. 3203–3207.
100 100 Niemiec, R., Brousseau, C., Mahdjoubi, K. et al. (2014). Characterization of an OAM flat‐plate antenna in the millimeter frequency band. IEEE Antennas and Wireless Propagation Letters 13: 1011–1014.
101 101 Tamburini, F., Mari, E., Thidé, B. et al. (2011). Experimental verification of photon angular momentum and vorticity with radio techniques. Applied Physics Letters 99 (20): 204102.
102 102 Bai, Q., Tennant, A., and Allen, B. (2014). Experimental circular phased array for generating OAM radio beams. Electronics Letters 50 (20): 1414–1415.
103 103 Liu, K., Liu, H., Qin, Y. et al. (2016). Generation of OAM beams using phased array in the microwave band. IEEE Transactions on Antennas and Propagation 64 (9): 3850–3857.
104 104 Kang, L., Li, H., Zhou, J. et al. (2019). A mode‐reconfigurable orbital angular momentum antenna with simplified feeding scheme. IEEE Transactions on Antennas and Propagation 67 (7): 4866–4871.
105 105 Liu, Q., Chen, Z.N., Liu, Y. et al. (2018). Circular polarization and mode reconfigurable wideband orbital angular momentum patch array antenna. IEEE Transactions on Antennas and Propagation 66 (4): 1796–1804.
106 106 Zhao, M., Gao, X., Xie, M. et al. (2018). Generation of coupled radio frequency orbital angular momentum beam with an optical‐controlled circular antenna array. Optics Communications 426: 126–129.
107 107 Gong, Y., Wang, R., Deng, Y. et al. (2017). Generation and transmission of OAM‐carrying vortex beams using circular antenna array. IEEE Transactions on Antennas and Propagation 65 (6): 2940–2949.
108 108 Yuan, T., Cheng, Y., Wang, H.‐Q., and Qin, Y. (2016). Generation of OAM radio beams with modified uniform circular array antenna. Electronics Letters 52 (11): 896–898.
109 109 Lin, M., Gao, Y., Liu, P., and Liu, J. (2017). Theoretical analyses and design of circular array to generate orbital angular momentum. IEEE Transactions on Antennas and Propagation 65 (7): 3510–3519.
110 110 F. E. Mahmouli and S. Walker. (2012). Orbital angular momentum generation in a 60GHz wireless radio channel, 2012 20th Telecommunications Forum (TELFOR), Belgrade, Serbia: IEEE, (20–22 November 2012).
111 111 Bazhenov, V.Y., Vasnetsov, M., and Soskin, M. (1990). Laser beams with screw dislocations in their wavefronts. JETP Letter 52 (8): 429–431.
112 112 Heckenberg, N., McDuff, R., Smith, C., and White, A. (1992). Generation of optical phase singularities by computer‐generated holograms. Optics Letters 17 (3): 221–223.
113 113 Arlt, J., Dholakia, K., Allen, L., and Padgett, M. (1998). The production of multiringed Laguerre–Gaussian modes by computer‐generated holograms. Journal of Modern Optics 45 (6): 1231–1237.
114 114 Meng, X.‐S., Wu, J.‐J., Wu, Z.‐S. et al. (2018). Design of multiple‐polarization reflectarray for orbital angular momentum wave in radio frequency. IEEE Antennas and Wireless Propagation Letters 17 (12): 2269–2273.
115 115 Yu, S., Li, L., Shi, G. et al. (2016). Generating multiple orbital angular momentum vortex beams using a metasurface in radio frequency domain. Applied Physics Letters 108 (24): 241901.
116 116 Chen, G.‐T., Jiao, Y.‐C., and Zhao, G. (2018). A reflectarray for generating wideband circularly polarized orbital angular momentum vortex wave. IEEE Antennas and Wireless Propagation Letters 18 (1): 182–186.
117 117 Huang, H.‐F. and Li, S.‐N. (2019). High‐efficiency planar reflectarray with small‐size for OAM generation at microwave range. IEEE Antennas and Wireless Propagation Letters 18 (3): 432–436.
118 118 Marrucci, L., Karimi, E., Slussarenko, S. et al. (2011). Spin‐to‐orbital conversion of the angular momentum of light and its classical and quantum applications. Journal of Optics 13 (6): 064001.
119 119 Pan, Y., Zheng, S., Zheng, J. et al. (2016). Generation of orbital angular momentum radio waves based on dielectric resonator antenna. IEEE Antennas and Wireless Propagation Letters 16: 385–388.
120 120 Zheng, S., Hui, X., Jin, X. et al. (2015). Transmission characteristics of a twisted radio wave based on circular traveling‐wave antenna. IEEE Transactions on Antennas and Propagation 63 (4): 1530–1536.
121 121 Wu, J., Zhang, Z., Ren, X. et al. (2019). A broadband electronically mode‐reconfigurable orbital angular momentum metasurface antenna. IEEE Antennas and Wireless Propagation Letters 18 (7): 1482–1486.
122 122 Balanis, C.A. (2012). Advanced Engineering Electromagnetics, 2e. John Wiley & Sons.
123 123 Duan, D.‐W. and Rahmat‐Samii, Y. (1992). A generalized three‐parameter (3‐P) aperture distribution for antenna applications. IEEE Transactions on Antennas and Propagation 40 (6): 697–713.
Конец ознакомительного фрагмента.
Текст предоставлен ООО «ЛитРес».
Прочитайте эту книгу целиком, купив полную легальную версию на ЛитРес.
Безопасно оплатить книгу можно банковской картой Visa, MasterCard, Maestro, со счета мобильного телефона, с платежного терминала, в салоне МТС или Связной, через PayPal, WebMoney, Яндекс.Деньги, QIWI Кошелек, бонусными картами или другим удобным Вам способом.