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Experimental modulation bandwidth beyond the relaxation oscillation frequency in a monolithic twin-ridge laterally coupled diode laser based on lateral mode locking

机译:基于横向锁模的单晶双脊横向耦合二极管激光器的实验调制带宽超过弛豫振荡频率

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摘要

Monolithic twin-ridge laterally coupled diode lasers emitting at 1.3 μm are presented that have a small-signal modulation bandwidth beyond the relaxation oscillation frequency of a single ridge. Spectra and spectrally resolved far fields are presented for three bias conditions: only one ridge lasing, both ridges lasing just above threshold, and both ridges lasing at biases well above threshold. In the first two cases the spectrum has single-peaked longitudinal modes, whereas the third cases shows splitting to in-phase and out-of-phase modes. The splitting frequency of the optical spectrum is measured to be 7.7 GHz. Small-signal modulation measurements reveal a strong resonance at 7.7 GHz, demonstrating an effect of lateral mode locking. As a result of this effect, the twin-ridge laser can be made to have a -3-dB bandwidth beyond that associated with its relaxation oscillation frequency.
机译:提出了以1.3μm发射的单片双脊横向耦合二极管激光器,该激光器具有超出单个脊的弛豫振荡频率的小信号调制带宽。给出了三种偏置条件下的光谱和经光谱解析的远场:仅一个脊发射激光,两个脊发射激光刚好在阈值之上,并且两个脊发射激光在偏置远高于阈值的情况下。在前两种情况下,频谱具有单峰纵向模式,而第三种情况则显示为分裂为同相和异相模式。光谱的分裂频率经测量为7.7 GHz。小信号调制测量显示出在7.7 GHz处的强烈共振,证明了横向锁模的效果。结果,可以使双脊激光器具有比其弛豫振荡频率大的-3-dB带宽。

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