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Infrared Two-Color Ghost Imaging Using Entangled Beams

机译:使用纠缠光束的红外双色鬼影成像

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We carried out ghost imaging experiments using nondegenerate entangled beams with the central wavelengths at 810 nm and 1550 nm. The pulsed pump at 532 nm had the high efficiency of parametric down conversion and enabled ghost imaging although its average pump power was 10 mW. For the first time, we demonstrated ghost imaging with two disparate detectors: Si avalanche photodiode on one arm and InGaAs avalanche photodiode on the other. Objects were placed in the arm of the 1550 nm beam, whereas the imaging lens was placed in the arm of the 810 nm beam. Ghost imaging was constructed by using the quantum correlated portion of the data due to the nature of the entangled beams. Current theory for this configuration predicted that the image magnification by a degenerate source should be one and half times larger than that of this nondegenerate source; the observed magnification followed closely the value predicted by the theory.
机译:我们使用中心波长在810 nm和1550 nm的非简并纠缠光束进行了鬼影成像实验。尽管其平均泵浦功率为10 mW,但532 nm的脉冲泵浦具有较高的参数下转换效率,并能够进行重影成像。首次,我们用两个不同的检测器演示了重影成像:一只手臂上的Si雪崩光电二极管,另一只手臂上的InGaAs雪崩光电二极管。将物体放置在1550 nm光束的臂中,而将成像镜头放置在810 nm光束的臂中。由于纠缠光束的性质,通过使用数据的量子相关部分来构造重影成像。当前关于这种配置的理论预测,退化源的图像放大倍数应比该非退化源的图像放大倍数大一倍半。观察到的放大倍率紧随理论预测的值。

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