Laudyn Urszula A, Piccardi Armando, Kwasny Michal, Klus Bartlomiej, Karpierz Miroslaw A, Assanto Gaetano
Faculty of Physics, Warsaw University of Technology, PL-00662 Warsaw, Poland.
NooEL-Nonlinear Optics and OptoElectronics Lab, University Roma Tre, I-00146 Rome, Italy.
Materials (Basel). 2018 Sep 27;11(10):1837. doi: 10.3390/ma11101837.
Employing several nematic liquid crystal mixtures, we investigate how the thermo-optic response of nonlinear birefringent soft-matter affects the propagation of light beams and the features of self-induced waveguides. We address the formation of optical spatial solitons and the control of their trajectories versus temperature, comparing the measurements with the expectations based on a simplified model, showing an excellent agreement. Moreover, in a guest⁻host mixture with an absorbing dye dopant, we study the competition between reorientational and thermal nonlinearities, demonstrating that the two processes can be adjusted independently in order to tune the soliton properties, i.e., trajectory and confinement strength. Our results are an important contribution to better comprehend the role played by material properties on linear and nonlinear beam propagation, as well as their exploitation for signal processing and addressing.
我们使用几种向列型液晶混合物,研究非线性双折射软物质的热光响应如何影响光束传播和自感应波导的特性。我们探讨了光学空间孤子的形成及其轨迹随温度的控制,将测量结果与基于简化模型的预期进行比较,结果显示出极佳的一致性。此外,在含有吸收性染料掺杂剂的客体 - 主体混合物中,我们研究了重取向非线性和热非线性之间的竞争,证明可以独立调节这两个过程以调整孤子特性,即轨迹和限制强度。我们的结果对于更好地理解材料特性在线性和非线性光束传播中所起的作用,以及它们在信号处理和寻址方面的应用具有重要贡献。