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Ultra-low timing-jitter passively mode-locked fiber lasers for long-distance timing synchronization

机译:超低定时抖动被动锁模光纤激光器,实现长距离定时同步

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摘要

One of the key challenges for the next-generation light sources such as X-FELs is to implement a timing stabilization and distribution system to enable ∼ 10 fs synchronization of the different RF and laser sources distributed in such facilities with distances up to a few kilometers. These requirements appear to be beyond the capability of traditional RF distribution systems based on temperature-stabilized coaxial cables. A promising alternative is to use an optical transmission system: A train of pulses generated from a laser with low timing jitter is distributed over length-stabilized fiber links to remote locations. The repetition frequency of the pulse train and its higher harmonics contain the synchronization information. At the remote locations, RF signals are extracted simply by using a photodiode and a suitable bandpass filter to pick the desired harmonic of the laser repetition rate. Passively mode-locked Er-doped fiber lasers provide excellent long-term stability. The laser must have extremely low timing jitter, particularly at high frequencies (>1 kHz). Ultimately, the timing jitter is limited by quantum fluctuations in the number of photons making up the pulse and the incoherent photons added in the cavity due to spontaneous emission. The amplitude and phase noise of a home-built laser, generating 100-fs, 1-nJ pulses, was characterized. The measured phase noise (timing jitter) is sub-10 fs. from 1 kHz to Nyquist frequency. In addition to synchronization of accelerators, the ultra-low timing jitter pulse source can find applications in next-generation telecommunication systems.
机译:诸如X-FEL之类的下一代光源的主要挑战之一是实现定时稳定和分配系统,以使分布在此类设施中的,距离可达几公里的不同RF和激光源实现约10 fs的同步。 。这些要求似乎超出了基于温度稳定同轴电缆的传统RF分配系统的能力。一种有前途的替代方法是使用光传输系统:由低时序抖动的激光器产生的脉冲序列通过长度稳定的光纤链路分配到远程位置。脉冲序列的重复频率及其高次谐波包含同步信息。在偏远地区,只需使用光电二极管和合适的带通滤波器提取射频信号即可,以选择所需的激光重复频率谐波。被动锁模掺Er光纤激光器具有出色的长期稳定性。激光器必须具有极低的时序抖动,尤其是在高频(> 1 kHz)下。最终,定时抖动受到组成脉冲的光子数量的量子波动以及由于自发发射而添加到腔体中的非相干光子的限制。表征了产生100-fs,1-nJ脉冲的家用激光器的幅度和相位噪声。测得的相位噪声(时序抖动)小于10 fs。从1 kHz到奈奎斯特频率。除了加速器的同步之外,超低定时抖动脉冲源还可以在下一代电信系统中找到应用。

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