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Mid-infrared coincidence measurements based on intracavity frequency conversion

机译:基于腔内频率转换的中红外一致性测量

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In the last years, the Mid Infrared (MIR) spectral region has attracted the attention of many areas of science and technology, opening the way to important applications, such as molecular imaging, remote sensing, free-space communication and environmental monitoring. However, the development of new sources of light, such as quantum cascade laser, was not followed by an adequate improvement in the MIR detection system, able to exceed the current challenges. Here we demonstrate the single-photon counting capability of a new detection system, based on efficient up-converter modules, by proving the correlated nature of twin photons pairs at about 3.1μm, opening the way to the extension of quantum optics experiments in the MIR.
机译:在过去的几年中,中红外(MIR)光谱区域吸引了许多科学和技术领域的注意力,为分子成像,遥感,自由空间通信和环境监测等重要应用开辟了道路。但是,在诸如量子级联激光器之类的新光源的开发之后,MIR检测系统没有得到足够的改进,从而能够克服当前的挑战。在这里,我们通过证明大约3.1μm的双光子对的相关性质,证明了基于有效的上变频器模块的新型检测系统的单光子计数能力,为扩展MIR中的量子光学实验开辟了道路。

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