Kang Jiqiang, Marhic M E, Li Bowen, Tan Sisi, Wang Xie, Wong Kenneth K Y
Opt Express. 2017 Oct 30;25(22):27785-27794. doi: 10.1364/OE.25.027785.
A semi-classical model is proposed theoretically and demonstrated experimentally on the optical receiver sensitivity enhancement by single-band (signal or idler) and dual-band (signal and idler) fiber optical parametric amplifier (FOPA). The sensitivity enhancement by single-band is determined by the gain of FOPA and the transmission loss of signal and idler, and it can be further improved by up to 3-dB using amplified signal and phase-conjugated idler together at dual-band configuration. The theoretical results are experimentally verified in both fiber communication and biomedical imaging applications. This detection sensitivity enhancement scheme can be potentially applied in the scenarios where ultrafast broadband signal at low-power level is being handled.
理论上提出了一种半经典模型,并通过单波段(信号或闲频)和双波段(信号和闲频)光纤光学参量放大器(FOPA)对光接收机灵敏度增强进行了实验验证。单波段的灵敏度增强由FOPA的增益以及信号和闲频的传输损耗决定,在双波段配置下,同时使用放大信号和相位共轭闲频可进一步将其提高多达3分贝。理论结果在光纤通信和生物医学成像应用中均得到了实验验证。这种检测灵敏度增强方案有可能应用于处理低功率水平超快宽带信号的场景。