ID: 2012.00225

Nonreciprocal optical solitons in a spinning Kerr resonator

December 1, 2020

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Jonas Veenstra, Oleksandr Gamayun, Xiaofei Guo, Anahita Sarvi, ... , Coulais Corentin
Soft Condensed Matter
Materials Science
Pattern Formation and Solito...

From protein motifs to black holes, topological solitons are pervasive nonlinear excitations that are robust and that can be driven by external fields. So far, existing driving mechanisms all accelerate solitons and antisolitons towards opposite directions. Here we introduce a local driving mechanism for solitons that accelerates both solitons and antisolitons in the same direction instead: non-reciprocal driving. To realize this mechanism, we construct an active mechanical m...

Optical isolation induced by subwavelength spinning particle via spin-orbit interaction

November 24, 2020

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Hongkang Shi, Yuqiong Cheng, Zheng Yang, ... , Wang Shubo
Optics

Optical isolation enables nonreciprocal manipulations of light with broad applications in optical communications. Optical isolation by rotating structures has drawn considerable attention due to its magnetic-free nature and unprecedented performance. Conventional rotation-based optical isolation relies on the use of bulky cavities hindering applications in subwavelength photonics. Here, we propose a novel mechanism of optical isolation by integrating the unique dispersion of ...

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Nonreciprocal Optomechanical Entanglement against Backscattering Losses

February 25, 2020

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Ya-Feng Jiao, Sheng-Dian Zhang, Yan-Lei Zhang, Adam Miranowicz, ... , Jing Hui
Quantum Physics

We propose how to achieve nonreciprocal quantum entanglement of light and motion and reveal its counterintuitive robustness against random losses. We find that by splitting the counterpropagating lights of a spinning resonator via the Sagnac effect, photons and phonons can be entangled strongly in a chosen direction but fully uncorrelated in the other. This makes it possible both to realize quantum nonreciprocity even in the absence of any classical nonreciprocity and also to...

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Nonreciprocal light propagation induced by a subwavelength spinning cylinder

April 23, 2022

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Zheng Yang, Yuqiong Cheng, Neng Wang, ... , Wang Shubo
Optics

Nonreciprocal optical devices have broad applications in light manipulations for communications and sensing. Non-magnetic mechanisms of optical nonreciprocity are highly desired for high-frequency on-chip applications. Here, we investigate the nonreciprocal properties of light propagation in a dielectric waveguide induced by a subwavelength spinning cylinder. We find that the chiral modes of the cylinder can give rise to unidirectional coupling with the waveguide via the tran...

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Engineering soliton nonlinearities: From local to strongly nonlocal

February 7, 2009

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Yaroslav V. Kartashov, Victor A. Vysloukh, Lluis Torner
Optics
Pattern Formation and Solito...

We put forward a strategy to achieve synthetic nonlinearities where local and nonlocal contributions compete on similar footing, thus yielding intermediate tunable responses ranging from fully local to strongly nonlocal. The physical setting addressed is a semiconductor material with both Kerr and thermal nonlinearities illuminated by a pulse train with suitable single-pulse width and repetition rate. We illustrate the potential of the scheme by showing that it supports solit...

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On the optical nonreciprocity and slow light propagation in coupled spinning optomechanical resonators

October 8, 2018

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Imran M. Mirza, Wenchao Ge, Hui Jing
Quantum Physics

We study the optical transmission characteristics of pump-probe driven spinning optomechanical ring resonators coupled in a series configuration. After performing the steady-state analysis valid for an arbitrary number of resonators, as an example, we discuss the two-resonator problem in detail. Therein, we focus on how changing the optical Sagnac effect due to same or opposite spinning directions of resonators can lead to enhanced, non-reciprocal and delayed probe light tran...

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Coexistence and interactions between nonlinear states with different polarizations in a monochromatically driven passive Kerr resonator

February 14, 2019

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Alexander U. Nielsen, Bruno Garbin, Stéphane Coen, ... , Erkintalo Miro
Optics

We report on experimental observations of coexistence and interactions between nonlinear states with different polarizations in a passive Kerr resonator driven at a single carrier frequency. Using a fiber ring resonator with adjustable birefringence, we partially overlap nonlinear resonances of two orthogonal polarization modes, achieving coexistence between different nonlinear states by locking the driving laser frequency at various points within the overlap region. In parti...

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Soliton crystals in Kerr resonators

October 1, 2016

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Daniel C. Cole, Erin S. Lamb, Pascal Del'Haye, ... , Papp Scott B.
Optics

Strongly interacting solitons confined to an optical resonator would offer unique capabilities for experiments in communication, computation, and sensing with light. Here we report on the discovery of soliton crystals in monolithic Kerr microresonators-spontaneously and collectively ordered ensembles of co-propagating solitons whose interactions discretize their allowed temporal separations. We unambiguously identify and characterize soliton crystals through analysis of their...

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Fundamentals of optical non-reciprocity based on optomechanical coupling

December 21, 2016

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Mohammad-Ali Miri, Freek Ruesink, ... , Alù Andrea
Optics

Optical isolation, non-reciprocal phase transmission and topological phases for light based on synthetic gauge fields have been raising significant interest in the recent literature. Cavity-optomechanical systems that involve two optical modes coupled to a common mechanical mode form an ideal platform to realize these effects, providing the basis for various recent demonstrations of optomechanically induced non-reciprocal light transmission. Here, we establish a unifying theo...

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Temporal solitons in optical microresonators

November 4, 2012

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T. Herr, V. Brasch, J. D. Jost, C. Y. Wang, N. M. Kondratiev, ... , Kippenberg T. J.
Optics

Dissipative solitons can emerge in a wide variety of dissipative nonlinear systems throughout the fields of optics, medicine or biology. Dissipative solitons can also exist in Kerr-nonlinear optical resonators and rely on the double balance between parametric gain and resonator loss on the one hand and nonlinearity and diffraction or dispersion on the other hand. Mathematically these solitons are solution to the Lugiato-Lefever equation and exist on top of a continuous wave (...

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