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High speed and low side lobe optical phased array steering by phase correction technique

机译:相位校正技术的高速和低侧凸光相控阵转向

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Laser beam scanners are important optical elements with a large variety of applications in the measurement techniques, optical communications, laser imaging ladar, etc. Agile beam steering of optical radiation using phased arrays offers significant advantages, such as weight, stability and power requirements over conventional beam steering systems. There are several kinds of optical phased array technology to be developed, such as Lithium tantalite phase shifters, lithium niobate electro-optic prism deflectors, and liquid crystal and ferroelectric liquid crystal phase modulations. However, one of the major drawbacks of these approaches is low light efficiencies because of the side lobes in far-field pattern of the steering beam. In this paper, a new low side lobe optical beam steering technique using phase correction technique is proposed. A stable and fast single-lobed far-field pattern in steering beam can be obtained from the optical phased array with a phase plate by optima design. It can result in a substantially increased light efficiency and beam quality. The quantitative calculation results of typical optical phased array are demonstrated. The low side lobe optical beam steering technology of optical phased array will benefit many practical applications such as laser ladar, laser communications and high resolution displays.
机译:激光束扫描仪是具有大量应用中的重要光学元件,在测量技术中,光通信,激光成像LADAR等。使用相控阵的光辐射的敏捷光束转向具有显着的优点,例如传统的重量,稳定性和功率要求。光束转向系统。有几种类型的光学相控阵技术的要被开发出来,如钽酸锂移相器,铌酸锂电光棱镜偏转器,以及液晶和铁电液晶相位调制。然而,由于转向梁的远场图案的侧面凸起,这些方法的主要缺点之一是低光效率。本文提出了一种使用相位校正技术的新的低侧瓣光束转向技术。通过Optima设计,可以从光相控阵的光相控阵列获得转向梁中的稳定和快速的单叶的远场图案。它可以导致显着增加的光效率和光束质量。证明了典型光相控阵的定量计算结果。光相控阵的低侧瓣光束转向技术将有利于许多实际应用,例如激光LAD,激光通信和高分辨率显示。

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