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首页> 外文期刊>Optics Letters >Tailored first- and second-order coherence properties of quantum dot superluminescent diodes via optical feedback
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Tailored first- and second-order coherence properties of quantum dot superluminescent diodes via optical feedback

机译:通过光反馈定制量子点超发光二极管的一阶和二阶相干特性

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摘要

We demonstrate experimentally that the first- and second-order coherence properties of light emitted by a quantum dot superluminescent diode can be simultaneously tailored by well-controlled optical feedback. Depending on feedback intensity and feedback spectral range we achieve a spectral width Δλ between 120 and 0.26 nm, corresponding to a coherence length in first order in the range between 13 and 5820 μm, while the central second-order coherence degree g~(2)(τ = 0) is tuned gradually from a thermal value of g~(2)(0) ~ 1.8 down to the coherent laser limit of g~(2)(0) = 1.0. These results are complemented by comprehensive investigations of relative intensity noise, which are in excellent agreement with the observed intensity correlation behavior.
机译:我们通过实验证明,由量子点超发光二极管发射的光的一阶和二阶相干特性可以通过控制良好的光反馈同时进行调整。根据反馈强度和反馈光谱范围,我们获得120至0.26 nm之间的光谱宽度Δλ,对应于13至5820μm范围内的一阶相干长度,而中心二阶相干度g〜(2) (τ= 0)从g〜(2)(0)〜1.8的热值逐渐调谐到g〜(2)(0)= 1.0的相干激光极限。这些结果得到了相对强度噪声的综合研究的补充,这与观察到的强度相关性行为非常吻合。

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