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1Advances in on-chip photonic devices based on lithium niobate on insulator显示文摘Crystalline lithium niobate(LN)is an important optical material because of its broad transmission window that spans from ultraviolet to mid-infrared and its large nonlinear and electro-optic coefficients.Furthermore,the recent development and commercialization of LN-on-insulator(LNOI)technology has opened an avenue for the realization of integrated on-chip photonic devices with unprecedented performances in terms of propagation loss,optical nonlinearity,and electro-optic tunability.This review begins with a brief introduction of the history and current status of LNOI photonics.We then discuss the fabrication techniques of LNOI-based photonic structures and devices.The recent revolution in the LN photonic industry has been sparked and is still being powered by innovations of the nanofabrication technology of LNOI,which enables the production of building block structures,such as optical microresonators and waveguides of unprecedented optical qualities.The following sections present various on-chip LNOI devices categorized into nonlinear photonic and electro-optic tunable devices and photonic-integrated circuits.Some conclusions and future perspectives are provided.JINTIAN LIN FANG BO YA CHENG JINGJUN XU 2020Photonics Research2020,8,12:26
2飞秒激光仿生制备超滑表面及其应用显示文摘仿生超滑表面由于能抗各种液体甚至动植物黏附,因而具有非常重要的研究价值和广泛的应用前景。飞秒激光微加工技术具有材料普适性强、加工精度高、可控性强等特点,在制备和调控特殊浸润性表面方面具有非常突出的优势。从仿生制造的角度出发,首先介绍了飞秒激光微加工在构建和控制超疏水表面、水下超疏油表面的相关研究进展,分析了其在实际应用中的局限和不足;概述了超滑表面的制备原则及飞秒激光制备超滑表面的工艺方法,系统地总结了飞秒激光制备的各类超滑表面,及其对多种液体和气泡的操控;介绍了超滑表面的一些典型应用;最后总结和讨论了飞秒激光制备超滑表面研究和应用中存在的问题及发展前景。方瑶 雍佳乐 霍静岚 杨青 成扬 梁婕 陈烽 2020激光与光电子学进展2020,57,11:5
3Polarization conversion using customized subwavelength laser-induced periodic surface structures on stainless steel显示文摘Stainless steel is a basic raw material used in many industries.It can be customized by generating laser-induced periodic surface structure(LIPSS)as subwavelength gratings.Here,we present the capabilities of an LIPSS on stainless steel to modify the polarization state of the reflected radiation at the IR band.These structures have been modeled using the finite element method and fabricated by femtosecond laser processing.The Stokes parameters have been obtained experimentally and a model for the shape has been used to fit the simulated Stokes values to the experimental data.The birefringence of the LIPSS is analyzed to explain how they modify the polarization state of the incoming light.We find the geometry of the subwavelength grating that makes it work as an optical retarder that transforms a linearly polarized light into a circularly polarized wave.In addition,the geometrical parameters of the LIPSS are tuned to selectively absorb one of the components of the incoming light,becoming a linear axial polarizer.Appropriately selecting the geometrical parameters and orientation of the fabricated LIPSS makes it possible to obtain an arbitrary pure polarization state when illuminated by a pure linearly polarized state oriented at an azimuth of 45°.The overall reflectance of these transformations reaches values close to 60%with respect to the incident intensity,which is the same reflectivity obtained for non-nanostructured stainless steel flat surfaces.MAHMOUD H.ELSHORBAGY LUIS MIGUEL SÁNCHEZ-BREA JERÓNIMO BUENCUERPO JESÚS DEL HOYO ÁNGELA SORIA-GARCÍA VERÓNICA PASTOR-VILLARRUBIA ALEJANDRO SAN-BLAS AINARA RODRÍGUEZ SANTIAGO MIGUEL OLAIZOLA JAVIER ALDA 2022Photonics Research2022,10,9:0
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