Hybrid surface wave propagation through the interface of semiconductor and metal waveguide
暂无分享,去创建一个
M. Mustaqeem | Muhammad Naveed Akram | Nimra Lateef | Yang‐Fang Chen | Tawfik A. Saleh | Muhammad Zulqarnain
[1] Jinyi Li,et al. Quantitative Determination of Loss Properties of Semiconductor Laser Beams Propagating in Hollow Waveguides , 2022, IEEE Photonics Journal.
[2] Neha Sharma. Multilayer Optical Waveguides as Isolators, Polarizers and Other Optical Devices: A Review , 2021, Journal of Engineering Research and Reports.
[3] Y. Bouznit,et al. Structural and optical characterization of sol–gel processed Al-doped ZnO waveguide films for integrated optical devices , 2021, Applied Physics A.
[4] Li-Ming Zhao,et al. Tunable multichannel Photonic spin Hall effect in metal-dielectric-metal waveguide , 2021, Scientific Reports.
[5] M. Rakhshani. Refractive index sensor based on dual side-coupled rectangular resonators and nanorods array for medical applications , 2021, Optical and Quantum Electronics.
[6] Matthieu Zimmer,et al. Demonstration of a 20‐W membrane‐external‐cavity surface‐emitting laser for sodium guide star applications , 2021, Electronics Letters.
[7] L. Deng,et al. Waveguide-integrated high-performance magneto-optical isolators and circulators on silicon nitride platforms , 2020, Optica.
[8] B. Blagoev,et al. Atomic Layer-Deposited Al-Doped ZnO Thin Films for Display Applications , 2020, Coatings.
[9] Jian Xu,et al. Performing optical logic operations by a diffractive neural network , 2020, Light: Science & Applications.
[10] M. Mondal,et al. Fast response and low temperature sensing of acetone and ethanol using Al-doped ZnO microrods , 2020 .
[11] Jinyi Li,et al. Towards high-precision hollow waveguide-based gas sensors adapting nonuniform pressure and immune to flow fluctuation , 2020 .
[12] L. Pfeiffer,et al. Electrically controlled waveguide polariton laser , 2020, Optica.
[13] Mahesh Kumar,et al. Enhanced sensing performance of ZnO nanostructures-based gas sensors: A review , 2020 .
[14] Jinyi Li,et al. Quantitative analysis of ammonia adsorption in Ag/AgI-coated hollow waveguide by mid-infrared laser absorption spectroscopy , 2019, Optics and Lasers in Engineering.
[15] M. A. Jalil,et al. Introduction to Photonics: Principles and the Most Recent Applications of Microstructures , 2018, Micromachines.
[16] D. Mathur,et al. Inscription of type I and depressed cladding waveguides in lithium niobate using a femtosecond laser. , 2017, Applied optics.
[17] Pao Tai Lin,et al. Planar silicon nitride mid-infrared devices , 2013 .
[18] Xudong Fan,et al. Optofluidic Microsystems for Chemical and Biological Analysis. , 2011, Nature photonics.
[19] A. Hawkins,et al. The photonic integration of non-solid media using optofluidics , 2011 .
[20] Barry M. Holmes,et al. Recent advances in phase matching of second‐order nonlinearities in monolithic semiconductor waveguides , 2011 .
[21] Kresten Yvind,et al. Slow light in a semiconductor waveguide at gigahertz frequencies. , 2005, Optics express.
[22] Isabelle Sagnes,et al. Measuring propagation loss in a multimode semiconductor waveguide , 2005 .
[23] F. Capasso,et al. Quantum cascade lasers with double metal-semiconductor waveguide resonators , 2002 .
[24] G. Goubau. Surface Waves and Their Application to Transmission Lines , 1950 .
[25] Rajini V. Honnungar,et al. A Review on Materials for Integrated Optical Waveguides , 2022 .
[26] Qi Gao,et al. Continuous photon Hall effect on metal surface , 2021 .
[27] A. Baset,et al. A comprehensive review of green synthesis of copper oxide nanoparticles and their diverse biomedical applications , 2021 .
[28] Shweta N. Shah,et al. Dispersion characteristics of dielectric tube waveguide loaded with plasma for leaky wave antenna application , 2018 .
[29] J. Zenneck. Über die Fortpflanzung ebener elektromagnetischer Wellen längs einer ebenen Leiterfläche und ihre Beziehung zur drahtlosen Telegraphie , 1907 .