Spontaneous symmetry breaking in coupled ring resonators with linear gain and nonlinear loss
We present the study of the dynamics of a two-ring waveguidestructure with space-dependent coupling, constant linear gain and nonlinear absorption. This system can be implemented in various physical situations such as optical waveguides, atomic Bose-Einstein condensates, polarization condensates, et...
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Published in | Tạp chí Khoa học Vol. 48; no. 2A |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
Published |
15.08.2019
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Abstract | We present the study of the dynamics of a two-ring waveguidestructure with space-dependent coupling, constant linear gain and nonlinear absorption. This system can be implemented in various physical situations such as optical waveguides, atomic Bose-Einstein condensates, polarization condensates, etc. It is described by two coupled nonlinear Schrödinger equations. For numerical simulations we take local Gaussian coupling (single-Gaussian and double-Gaussian). We find that, depending on the values of involved parameters, we can obtain several interesting nonlinear phenomena, which include spontaneous symmetry breaking, modulational instability leading to generation of stable circular flows with various vorticities, stable inhomogeneous states with interesting structure of currents flowing between rings, as well as dynamical regimes having signatures of chaotic behavior. In this paper, we only focused on consider phenomenon of spontaneous symmetry breaking in the case of space dependent coupling. The results show that in the case of a coupling between the two rings is a function of single-Gaussian symmetry breaking only between rings. In contrast, in the case of a coupling between them as a double-Gaussian function, the symmetry breaking occurs only in each ring, breaking the symmetry of the space dependent coupling. |
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AbstractList | We present the study of the dynamics of a two-ring waveguidestructure with space-dependent coupling, constant linear gain and nonlinear absorption. This system can be implemented in various physical situations such as optical waveguides, atomic Bose-Einstein condensates, polarization condensates, etc. It is described by two coupled nonlinear Schrödinger equations. For numerical simulations we take local Gaussian coupling (single-Gaussian and double-Gaussian). We find that, depending on the values of involved parameters, we can obtain several interesting nonlinear phenomena, which include spontaneous symmetry breaking, modulational instability leading to generation of stable circular flows with various vorticities, stable inhomogeneous states with interesting structure of currents flowing between rings, as well as dynamical regimes having signatures of chaotic behavior. In this paper, we only focused on consider phenomenon of spontaneous symmetry breaking in the case of space dependent coupling. The results show that in the case of a coupling between the two rings is a function of single-Gaussian symmetry breaking only between rings. In contrast, in the case of a coupling between them as a double-Gaussian function, the symmetry breaking occurs only in each ring, breaking the symmetry of the space dependent coupling. |
Author | Long Van, CAO Thanh Thuy, DO Duy Cuong, NGUYEN Xuan Khoa, DINH Trippenbach, MAREK Dinh Thuan, BUI |
Author_xml | – sequence: 1 givenname: NGUYEN surname: Duy Cuong fullname: Duy Cuong, NGUYEN – sequence: 2 givenname: BUI surname: Dinh Thuan fullname: Dinh Thuan, BUI – sequence: 3 givenname: DINH surname: Xuan Khoa fullname: Xuan Khoa, DINH – sequence: 4 givenname: CAO surname: Long Van fullname: Long Van, CAO – sequence: 5 givenname: MAREK surname: Trippenbach fullname: Trippenbach, MAREK – sequence: 6 givenname: DO surname: Thanh Thuy fullname: Thanh Thuy, DO |
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Cites_doi | 10.1137/1.9780898719680 10.1126/science.1258004 10.1038/nphys2927 10.1103/PhysRevLett.120.065301 10.1103/PhysRevLett.108.173901 10.1103/PhysRevLett.93.220402 10.1038/nphoton.2014.133 10.15625/0868-3166/28/4/13195 10.1103/PhysRevLett.95.110401 10.3390/sym10060195 10.1038/s41598-017-04408-y 10.1103/PhysRevA.96.033621 10.1103/PhysRevLett.99.260401 10.1103/PhysRevA.87.053852 |
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CorporateAuthor | Industrial University of Vinh, 26 Nguyen Thai Hoc Street, Vinh City, Vietnam Physics Department, University of Warsaw, ul. Pasteura 5, 02-093 Warsaw Poland University of Zielona Góra, ul. Licealna 9, 65-417 Zielona Góra, Poland Vinh University, 182 Le Duan Street, Vinh City, Vietnam |
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References | ref13 ref12 Saito (ref17) 2004; 93 ref14 Ryu (ref9) 2007; 99 ref11 Duy Cuong (ref0) 2018; 28 ref1 Gain (ref15) 2018; 10 Liertzer (ref8) 2012; 108 Komineas S. & Brand (ref10) 2005; 95 ref18 ref7 ref4 with cubic self-attraction (ref2) 2017; 96 ref3 ref6 ref5 Chembo (ref16) 2103; 87 |
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