slab waveguides
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2021 ◽  
Author(s):  
Yaser Khorrami ◽  
DAVOOD Fathi ◽  
Amin Khavasi ◽  
Raymond C. Rumpf

Abstract We present a general approach for numerical mode analysis of the multilayer slab waveguides using the Transfer Matrix Method (TMM) instead of the Finite Difference Frequency Domain (FDFD) method. TMM consists of working through the device one layer at a time and calculating an overall transfer matrix. Using the scattering matrix technique, we develop the proposed method for multilayer structures. We find waveguide modes for both passive and active slabs upon determinant analysis of the scattering matrix of the slab. To do this, we enhance the formulation of spatial scattering matrix to reach spatiotemporal scattering matrix. Our proposed technique is more efficient and faster than other numerical methods. Simulation results show either the spatial modes of inactive and hybrid spacetime modes of active planar waveguide. Also, spacetime wave packets can be seen using plane wave injection into the time-dependent slab waveguide instead of previously reported diffraction-free wave packets which have been obtained using the multifrequency input injection into the un-patterned inactive slab waveguides.


2021 ◽  
Vol 2015 (1) ◽  
pp. 012014
Author(s):  
F. Benimetskiy ◽  
A. Yulin ◽  
V. Kravtsov ◽  
A. Mikhin ◽  
I. Iorsh ◽  
...  

Abstract New-generation nonlinear planar polaritonic devices based on 2D semiconductors demonstrate great potential for a wide range of practical applications. In this work, we experimentally study strong light–matter coupling between waveguide photons and excitons in a photonic system based on dielectric slab waveguides integrated with 2D transition metal dichalcogenides.


Optik ◽  
2021 ◽  
pp. 168222
Author(s):  
Pouya Hashemzadeh ◽  
Hojjat Ahmadi ◽  
Ali Rostami

2021 ◽  
Author(s):  
Evgeni A. Bezus ◽  
Dmitry A. Bykov ◽  
Leonid L. Doskolovich

Author(s):  
Aadel M. Alatwi ◽  
Ahmed Nabih Zaki Rashed

<p>This study develops an analytical method with numerical results for the design of optical slab waveguides for optical communication system applications. An optical slab waveguide structure made of silicon on silicon dioxide material is designed and analyzed. The effective index of the mode is studied against variations in the waveguide dimensions. Transmission and reflection coefficients are studied and compared to the wavelength and dimensions of the waveguide. Variations are sketched with the x-axis, in addition to the electric field intensity distribution and effective refractive index. Waveguide bending loss is also studied with waveguide thickness and length variations within three waveguide transmission windows of 850 nm, 1300 nm, and 1550 nm.</p>


2020 ◽  
Vol 52 (12) ◽  
Author(s):  
Sofyan A. Taya ◽  
Nael Doghmosh ◽  
Zaher M. Nassar ◽  
Murugan Senthil Mani Rajan ◽  
Dhasarathan Vigneswaran

2020 ◽  
Vol 102 (15) ◽  
Author(s):  
J. Ciers ◽  
D. D. Solnyshkov ◽  
G. Callsen ◽  
Y. Kuang ◽  
J.-F. Carlin ◽  
...  
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