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Efficient nonlinear beam shaping in three-dimensional lithium niobate nonlinear photonic crystals

机译:三维铌酸锂非线性光子晶体中高效的非线性梁形状

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Nonlinear beam shaping refers to spatial reconfiguration of a light beam at a new frequency, which can be achieved by using nonlinear photonic crystals (NPCs). Direct nonlinear beam shaping has been achieved to convert second-harmonic waves into focusing spots, vortex beams, and diffraction-free beams. However, previous nonlinear beam shaping configurations in one-dimensional and two-dimensional (2D) NPCs generally suffer from low efficiency because of unfulfilled phase-matching condition. Here, we present efficient generations of second-harmonic vortex and Hermite-Gaussian beams in the recently-developed three-dimensional (3D) lithium niobate NPCs fabricated by using a femtosecond-laser-engineering technique. Since 3D χsup(2)/sup modulations can be designed to simultaneously fulfill the requirements of nonlinear wave-front shaping and quasi-phase-matching, the conversion efficiency is enhanced up to two orders of magnitude in a tens-of-microns-long 3D NPC in comparison to the 2D case. Efficient nonlinear beam shaping paves a way for its applications in optical communication, super-resolution imaging, high-dimensional entangled source, etc.
机译:非线性光束成形是指以新频率的光束的空间重新配置,其可以通过使用非线性光子晶体(NPC)来实现。已经实现了直接非线性光束成形以将第二谐波波转换为聚焦点,涡流束和衍射无梁。然而,由于不达到的相位匹配条件,以一维和二维(2D)NPC的先前非线性光束成形配置通常由于不达到的相位匹配条件而受到低效率。在这里,我们在最近开发的三维(3D)锂铌酸锂NPC中提出了高效的二次谐波涡流和Hermite-高斯梁,通过使用飞秒激光工程技术制造。由于3Dχ(2)调制可以设计成同时满足非线性波前成型和准相位匹配的要求,因此转换效率提高到数段中的两个数量级与2D案例相比微米长3D NPC。高效的非线性光束整形为其在光通信,超分辨率成像,高维缠结源等中的应用铺平了一种方式

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