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Coherence Tuning in Optically Coupled Phased Vertical Cavity Laser Arrays

机译:光耦合相控垂直腔激光器阵列中的相干调谐

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Vertical-cavity surface-emitting laser arrays can be designed to operate in a coherently coupled mode, however, high yield has been challenging in past efforts. We discuss microcavity laser arrays that are designed to be optically coupled but with independent bias current injection into each array element. We demonstrate that these arrays can be electronically tuned to coherently coupled operation and at bias conditions not previously realized. Control of injection bias conditions to individual array elements allows resonance tuning of each element with the result that the phase relation and coherence of the array can be engineered. This control enables increased output power in either in-phase or out-of-phase coherent operation from a single array, and ensures coherent operation from nearly all arrays. This ability to tune into coherence will enhance the performance of phased vertical cavity laser arrays as well as improve their fabrication yield.
机译:可以将垂直腔面发射激光器阵列设计为以相干耦合模式进行操作,但是,在过去的努力中,高产量一直是一项挑战。我们讨论了微腔激光器阵列,该阵列设计成光耦合的,但具有独立的偏置电流注入到每个阵列元件中。我们证明了这些阵列可以被电子调谐到相干耦合的操作,并且在以前没有意识到的偏置条件下工作。对单个阵列元件的注入偏压条件的控制允许每个元件的谐振调谐,结果是可以设计阵列的相位关系和相干性。此控制可在单个阵列的同相或异相相干操作中提高输出功率,并确保几乎所有阵列的相干操作。调谐到相干的能力将增强相控垂直腔激光器阵列的性能,并提高其制造良率。

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