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Rotated waveplates in integrated waveguide optics

机译:集成波导光学器件中的旋转波片

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Controlling and manipulating the polarization state of a light beam is crucial in applications ranging from optical sensing to optical communications, both in the classical and quantum regime, and ultimately whenever interference phenomena are to be exploited. In addition, many of these applications present severe requirements of phase stability and greatly benefit from a monolithic integrated-optics approach. However, integrated devices that allow arbitrary transformations of the polarization state are very difficult to produce with conventional lithographic technologies. Here we demonstrate waveguide-based optical waveplates, with arbitrarily rotated birefringence axis, fabricated by femtosecond laser pulses. To validate our approach, we exploit this component to realize a compact device for the quantum state tomography of two polarization-entangled photons. This work opens perspectives for integrated manipulation of polarization-encoded information with relevant applications ranging from integrated polarimetric sensing to quantum key distribution.
机译:在从光学传感到光通信的各种应用中,无论是在经典还是量子状态下,以及最终要利用干扰现象时,控制和操纵光束的偏振态都是至关重要的。另外,许多这些应用提出了对相位稳定性的严格要求,并从单片集成光学方法中受益匪浅。然而,利用传统的光刻技术很难制造允许偏振态任意变换的集成器件。在这里,我们演示了由飞秒激光脉冲制造的,具有任意旋转的双折射轴的基于波导的光波片。为了验证我们的方法,我们利用这一组件来实现一种紧凑的装置,用于两个偏振纠缠光子的量子态层析成像。这项工作为极化编码信息的集成处理以及从集成极化传感到量子密钥分配的相关应用打开了前景。

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