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Frequency doubling of incoherent light from a superluminescent diode in a periodically poled lithium niobate waveguide crystal

机译:在周期性极化锂铌酸锂波导晶体中的超发光二极管的频率加倍

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摘要

The amplified spontaneous emission from a superluminescent diode was frequency doubled in a periodically poled lithium niobate waveguide crystal. The temporally incoherent radiation of such a superluminescent diode is characterized by a relatively broad spectral bandwidth and thermal-like photon statistics, as the measured degree of second order coherence, g((2))(0)= 1.9 +/- 0.1, indicates. Despite the non-optimized scenario in the spectral domain, we achieve six orders of magnitude higher conversion efficiency than previously reported with truly incoherent light. This is possible by using single spatial mode radiation and quasi phase matched material with a waveguide architecture. This work is a principle step towards efficient frequency conversion of temporally incoherent radiation in one spatial mode to access wavelengths where no radiation from superluminescent diodes is available, especially with tailored quasi phase matched crystals. The frequency doubled light might find application in imaging, metrology and quantum optics experiments.
机译:来自超级发光二极管的扩增的自发发射是在恒定抛光的铌酸锂波导晶体中增加的频率。这种超发光二极管的时间上不连贯辐射的特征在于相对宽的光谱带宽和热样光子统计,作为测量的二阶相干性,G((2))(0)= 1.9 +/- 0.1表示。尽管光谱域中的非优化方案,但我们达到六个数量级的转换效率,而不是以前报告真正的不连贯光。通过使用具有波导架构的单个空间模式辐射和准相位匹配的材料,这是可能的。这项工作是朝着一种空间模式中的时间上不连贯辐射的高效频率转换的原则上,以获得从超发光二极管的辐射可获得的波长,特别是具有定制的准相位匹配的晶体。频率加倍可能在成像,计量和量子光学实验中找到应用。

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