Opt Lett. 2018 Jun 1;43(11):2628-2631. doi: 10.1364/OL.43.002628.
This Letter investigates an optically injected semiconductor laser for conversion from non-orthogonally to orthogonally polarized optical single-sideband modulation. The underlying mechanism relies solely on nonlinear laser characteristics and, thus, only a typical semiconductor laser is required as the key conversion unit. This conversion can be achieved for a broadly tunable frequency range up to at least 65 GHz. After conversion, the microwave phase quality, including linewidth and phase noise, is mostly preserved, and simultaneous microwave amplification up to 23 dB is feasible.
这封信件研究了一种用于将非正交极化光单边带调制转换为正交极化光的光注入半导体激光器。其基本机制仅依赖于非线性激光特性,因此,仅需要典型的半导体激光器作为关键转换单元。这种转换可以在至少 65GHz 的宽可调谐频率范围内实现。转换后,微波相位质量(包括线宽和相位噪声)大部分得以保留,并且同时实现高达 23dB 的微波放大也是可行的。