Calculation and minimization of transition losses in arbitrarily curved waveguides
Lerner, L.
Optics Communications 101(5-6): 327-332
1993
ISSN/ISBN: 0030-4018 Accession: 074310727
Full-Text Article emailed within 1 workday
Payments are secure & encrypted

References
Bogdanovich, D.V. 2007: Minimization of losses and calculation of the optical properties of Bragg fiber waveguides with a hollow core JETP Letters 86(4): 235-239Subramaniam, V.; De Brabander, G.N.; Naghski, D.H.; Boyd, J.T. 1997: Measurement of mode field profiles and bending and transition losses in curved optical channel waveguides Journal of Lightwave Technology 15(6): 990-997
Ljunggren; Eriksson; Kralchevsky 1997: Minimization of the Free Energy of Arbitrarily Curved Interfaces Journal of Colloid and Interface Science 191(2): 424-441
Chin-Tarn Kwan 2002: A generalized velocity field for axisymmetric tube drawing through an arbitrarily curved die with an arbitrarily curved plug Journal of Materials Processing Technology 122(2-3): 213-219
Yan, J.; Hu, J.; Zhao, H.; Nie, Z. 2015: Diffraction Calculation of Arbitrarily Curved Wedge Modeled with Nurbs Surfaces Progress In Electromagnetics Research M 43: 63-70
Sobolev, D.I.; Chirkov, A.V.; Denisov, G.G.; Lukovnikov, D.A.; Malygin, V.I. 2005: Minimization of Diffraction Losses in Big Gaps of Multi-Mode Waveguides International Journal of Infrared and Millimeter Waves 26(7): 953-966
Dikken, D.J.; Spasenović, M.; Verhagen, E.; van Oosten, D.; Kuipers, L.K. 2010: Characterization of bending losses for curved plasmonic nanowire waveguides Optics Express 18(15): 16112-16119
Geshiro, M.; Sawa, S. 1981: A Method for Diminishing Total Transmission Losses in Curved Dielectric Optical Waveguides IEEE Transactions on Microwave Theory and Techniques 29(11): 1182-1187
Shiue, S.T. 1996: Minimization of low-temperature microbending losses in initially curved tightly jacketed double-coated optical fibres Optical and Quantum Electronics 28(10): 1379-1394
Truyaert, K.; Aleshin, V.; Van Den Abeele, K.; Delrue, S. 2019: Theoretical calculation of the instantaneous friction-induced energy losses in arbitrarily excited axisymmetric mechanical contact systems International Journal of Solids and Structures 158: 268-276
Frenkel, L.A.; Wood, J.S. 1991: Calculation of the characteristics of multilayer circular acoustic waveguides with losses Soviet Physics. Acoustics 37(5): 526-529
Fasquel, S.; Melique, X.; Vanbesien, O.; Lippens, D. 2005: Three-dimensional calculation of propagation losses in photonic crystal waveguides Optics Communications 246(1-3): 91-96
Castorina, G.; Torrisi, G.; Sorbello, G.; Celona, L.; Mostacci, A. 2019: Conductor losses calculation in two-dimensional simulations of H-plane rectangular waveguides Journal of Electromagnetic Waves and Applications 33(8): 981-990
Cryan, M.; Wong, D.; Craddock, I.; Yu, S.; Rorison, J.; Railton, C. 2005: Calculation of losses in 2-D photonic Crystal membrane waveguides using the 3-D FDTD method IEEE Photonics Technology Letters 17(1): 58-60
Seo, C.; Chen, J.C. 1996: Low transition losses in bent rib waveguides Journal of Lightwave Technology 14(10): 2255-2259
Svezhentsev, A.Y. 1995: Full-wave, edge-accounting calculation of losses in rectangular-groove waveguides Microwave and Optical Technology Letters 10(1): 52-56
Seo, C.; Kim, J.; Kim, D.S. 1997: Reduction of transition losses in bent rib waveguides Microwave and Optical Technology Letters 15(3): 184-188
Han, Z.; Zhang, P.; Bozhevolnyi, S.I. 2013: Calculation of bending losses for highly confined modes of optical waveguides with transformation optics Optics Letters 38(11): 1778-1780
Bienstman, P.; Six, E.; Roelens, A.; Vanwolleghem, M.; Baets, R. 2002: Calculation of bending losses in dielectric waveguides using eigenmode expansion and perfectly matched layers IEEE Photonics Technology Letters 14(2): 164-166