光学
相位噪声
物理
干涉测量
量子噪声
噪音(视频)
二次谐波产生
高次谐波产生
量子
激光器
计算机科学
量子力学
图像(数学)
人工智能
作者
Marvin Edelmann,Mikhail Pergament,Yi Hua,Sedigheh Malekmohamadi,Franz X. Kärtner
标识
DOI:10.1364/opticaopen.24574321.v2
摘要
We present a novel experimental fiber-interferometric device that achieves dual functionality: simultaneous amplification of the pulsed input signal and generation of its second harmonic while effectively suppressing the intensity noise in both modes, reaching the standard quantum-limit. The underlaying mechanism is based on phase-biased nonlinear polarization rotation coupled with type-I phase-matched second harmonic generation, a concept that is both theoretically investigated and experimentally verified. In the experiment, a fiber-optic system is constructed capable of generating 42 MHz ultra-low noise sub-150 fs output pulse trains simultaneously at 1030 nm and 515 nm, with average powers of 160 mW and 42 mW, respectively. Systematic frequency-resolved intensity noise measurements confirm dual wavelength, quantum-limited noise suppression beyond 100 kHz offset-frequency, with suppression levels up to 14 dB, showing correlation with local maxima in average power in both fundamental and second harmonic mode.
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