[1]. Knight, et al., Photonic band gap guidance in optical fibers. Science (New York, N.Y.), 1998. 282(5393): p. 1476-8.[2]. Benabid, F., et al., Stimulated Raman scattering in hydrogen-filled hollow-core photonic crystal fiber. Science, 2002. 298(5592): p. 399-402.[3]. Hasan, M.I., N. Akhmediev, and W. Chang, Mid-infrared supercontinuum generation in supercritical xenon-filled hollow-core negative curvature fibers. Opt Lett, 2016. 41(21): p. 5122-5125.[4]. Pryamikov, A.D., et al., Demonstration of a waveguide regime for a silica hollow - core microstructured optical fiber with a negative curvature of the core boundary in the spectral region > 3.5 mu m. Optics Express, 2011. 19(2): p. 1441-1448.[5]. Yu, F. and J.C. Knight, Spectral attenuation limits of silica hollow core negative curvature fiber. Opt Express, 2013. 21(18): p. 21466-71.[6]. Kolyadin, A.N., et al., Light transmission in negative curvature hollow core fiber in extremely high material loss region. Opt Express, 2013. 21(8): p. 9514-9.[7]. Debord, B., et al., Ultralow transmission loss in inhibited-coupling guiding hollow fibers. Optica, 2017. 4(2).[8]. Gao, S.F., et al., Hollow-core conjoined-tube negative-curvature fibre with ultralow loss. Nat Commun, 2018. 9(1): p. 2828.[9]. Bradley, T.D., et al., Antiresonant Hollow Core Fibre with 0.65 dB/km Attenuation across the C and L Telecommunication Bands. 45th European Conference on Optical Communication. 2019. 4 pp.-4 pp.[10]. Jasion, G.T., et al., Hollow Core NANF with 0.28 dB/km Attenuation in the C and L Bands. 2020 Optical Fiber Communications Conference and Exhibition. 2020. 3 pp.-3 pp.[11]. Dyott, R.B., J.R. Cozens, and D.G. Morris, Preservation of polarisation in optical-fibre waveguides with elliptical cores. Electronics Letters, 1979. 15(13): p. 380-2.[12]. Saitoh, K. and M. Koshiba, Photonic bandgap fibers with high birefringence. IEEE Photonics Technology Letters, 2002. 14(9): p. 1291-3.[13]. Mangan, B.J., et al., Realization of low loss and polarization maintaining hollow core photonic crystal fibers. 2008 Conference on Lasers and Electro-Optics & Quantum Electronics and Laser Science Conference, Vols 1-9. 2008. 2016-+.[14]. Vincetti, L. and V. Setti, Elliptical hollow core tube lattice fibers for terahertz applications. Optical Fiber Technology, 2013. 19(1): p. 31-34.[15]. Mousavi, S.A., et al., Broadband high birefringence and polarizing hollow core antiresonant fibers. Optics Express, 2016. 24(20): p. 22943-22958.[16]. Wei, C., C.R. Menyuk, and J. Hu, Polarization-filtering and polarization-maintaining low-loss negative curvature fibers. Optics Express, 2018. 26(8): p. 9528-9540.[17]. Berenger, J.P., A perfectly matched layer for the absorption of electromagnetic waves. Journal of Computational Physics, 1994. 114(2): p. 185-200.[18]. Michieletto, M., et al., Hollow-core fibers for high power pulse delivery. Optics Express, 2016. 24(7): p. 7103-7119.[19]. Litchinitser, N.M., et al., Antiresonant reflecting photonic crystal optical waveguides. Optics letters, 2002. 27(18): p. 1592-4.[20]. Vincetti, L. and V. Setti, Waveguiding mechanism in tube lattice fibers. Optics Express, 2010. 18(22): p. 23133-23146.[21]. West, J.A., et al., Surface modes in air-core photonic band-gap fibers. Optics Express, 2004. 12(8): p. 1485-1496.[22]. Marcatili, E.A.J. and R.A. Schmeltzer, Hollow Metallic and Dielectric Waveguides for Long Distance Optical Transmission and Lasers. 1964. 43(4): p. 1783 - 1809. |