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Beam steering for wireless optical links based on an optical phased array in silicon

机译:基于硅中的光相控阵的无线光链路的波束控制

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The ability to steer optical beams, crucial to the operation of high-speed optical wireless links may be achieved using optical phased array antennas which have significant potential in this application. The beam formed by the phased array antennas is steered by tuning the relative phase difference between the adjacent antenna elements which may be achieved nonmechanically. In this paper, the characteristics and behaviour of two dimensional optical phased arrays with a structure composed of 2 × 2, 4 × 4, and 16 × 16 antenna elements in beam steering are verified. The wavelength beam steering of −0.16°m is measured along the θ direction with a required steering range (between main lobes) of 1.97° within a −3 dB envelop of 5° extent in the θ direction and 7° extent in the Φ direction. To achieve two-dimensional beam steering, thermo-optic beam steering can be used in Φ direction. It is found that the thermo-optic phase tuning departs the expected quadratic dependence and is well characterised by a quartic dependence upon heater current or voltage.
机译:可以使用在此应用中具有巨大潜力的光学相控阵天线来实现对光束的转向能力,这对于高速光学无线链路的运行至关重要。通过调节相邻天线元件之间的相对相位差来控制由相控阵天线形成的波束,这可以通过非机械方式实现。本文验证了由2 beam×steering2、4×4和16×16天线元件组成的二维光学相控阵在波束控制中的特性和性能。 -0.16°/ nm的波长光束转向是沿着θ方向测量的,要求的转向范围(主瓣之间)为1.97°,在θ方向的5°范围和Φ的7°范围的-3 dB包络内方向。为了实现二维光束控制,可以在Φ方向上使用热光光束控制。已经发现,热光相位调谐超出了预期的二次依赖性,并且具有对加热器电流或电压的二次依赖性的良好特征。

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