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Controlling the coherence properties of quantum dot superluminescent light emitting diodes via frequency selective optical feedback

机译:通过频率选择光反馈控制量子点超声发光二极管的相干性能

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In low coherent light interferometry (OCT) broad bandwidth light sources are required to achieve high axial resolution. Here superluminescent light emitting diodes (SLEDs) utilizing quantum dot (QD) gain materials are promising devices as they unify large spectral bandwidths with high power at desired emission wavelengths. However, due to the spectral dot dynamics, dips in the optical spectrum occur that lead to parasitic coherence peaks in the interferogram. We apply frequency selective feedback to increase the output power and to shape the spectrum, hence optimizing the coherence properties of the QD-SLEDs.
机译:在低相干光干涉测量中(OCT)宽带宽光源需要实现高轴向分辨率。这里,利用量子点(QD)增益材料的超级发光发光二极管(SLED)是具有在所需发射波长下具有高功率的大的光谱带宽,所以有希望的装置。然而,由于光谱点动态,光谱中的倾角发生,导致干涉图中的寄生相干峰值。我们应用频率选择性反馈以增加输出功率并塑造频谱,因此优化QD-SLEDS的相干性能。

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