首页> 外文期刊>IEEE journal of selected topics in quantum electronics >High-efficiency InGaAs QW distributed Bragg reflector laser with curved grating for squeezed light generation
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High-efficiency InGaAs QW distributed Bragg reflector laser with curved grating for squeezed light generation

机译:具有弯曲光栅的高效InGaAs QW分布式布拉格反射镜激光器,用于产生挤压光

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摘要

A high-efficiency InGaAs quantum-well curved distributed Bragg reflector (DBR) laser was designed for squeezed light generation and fabricated using a selective-area quantum-well disordering technique to reduce absorption loss in the DBR grating region. Single-mode lasing with side-mode suppression ratio of 50 dB was obtained, and an external differential quantum efficiency as high as 0.71 was achieved under continuous-wave operation. Using balanced detection technique, the laser intensity noise relative to the standard quantum limit (SQL) was measured. Ultra-low noise characteristic of 0.8 dB below the standard quantum limit was achieved by wideband constant-current driving of the laser. This is the first demonstration of single-mode squeezed light generation by a monolithic semiconductor laser at room temperature.
机译:设计了一种高效InGaAs量子阱弯曲分布布拉格反射器(DBR)激光器,用于产生压缩光,并使用选择性区域量子阱无序技术制造,以减少DBR光栅区域的吸收损耗。获得了具有50 dB副模抑制比的单模激光,并且在连续波操作下获得了高达0.71的外部差分量子效率。使用平衡检测技术,测量了相对于标准量子极限(SQL)的激光强度噪声。通过激光器的宽带恒流驱动,可以实现低于标准量子极限0.8 dB的超低噪声特性。这是单片半导体激光器在室温下产生单模压缩光的首次演示。

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