kerr media
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2021 ◽  
pp. 105015
Author(s):  
Hamood Ur Rehman ◽  
Aly R. Seadawy ◽  
M. Younis ◽  
S. Yasin ◽  
Syed T.R. Raza ◽  
...  

2021 ◽  
Vol 323 ◽  
pp. 100-112
Author(s):  
Ochirbat Nyamsuren ◽  
Purevdorj Munkhbaatar ◽  
Duger Ulam-Orgikh ◽  
Jav Davaasambuu ◽  
G. Ochirbat

We applied the dielectric function method to solve analytically L-NL-L structure problems with negative Kerr nonlinearity. A damped wave in linear and a periodic standing wave in non-linear media had to be matched at boundaries. We gave a formulation of boundary conditions that did not explicitly include a film thickness. The boundary-value of a dielectric function can be expressed through the constant of non-trivial integral of motion. Using it, one generates a family of matched solutions satisfying boundary conditions. Then arbitrary film thickness can be checked against this family of solutions in search of matches. As a result, all fitted solutions are determined straightforwardly.


Crystals ◽  
2021 ◽  
Vol 11 (8) ◽  
pp. 879
Author(s):  
Li Shao ◽  
Yun-Long Wu ◽  
Qing Ye

The propagation characteristics of a single Airy beam in nonlinear Kerr media were numerically investigated by utilizing the split-step Fourier transform method. We show that in addition to normal breathing solitons, the anomalous bound states of Airy spatial solitons can also be formed, which are similar to the states formed in the interaction between two Airy beams in nonlinear media. This quasi-equilibrium state is formed by the interaction of the main soliton beam and side lobes of Airy beam due to their different propagation trajectories in the nonlinear media. Moreover, it has been shown the Airy spatial solitons in tree structure can be formed by adjusting the initial parameters in the interaction between the Airy beam and Kerr media.


2021 ◽  
pp. 104381
Author(s):  
Houria Triki ◽  
Abdelkrim Benlalli ◽  
Qin Zhou ◽  
Anjan Biswas ◽  
Mehmet Ekici ◽  
...  
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2021 ◽  
Vol 146 ◽  
pp. 110837
Author(s):  
Xing Zhu ◽  
Shangwen Liao ◽  
Zhen Cai ◽  
Yunli Qiu ◽  
Yingji He

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