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Real-time measurements, rare events and photon economics

机译:实时测量,罕见事件和光子经济学

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摘要

Rogue events otherwise known as outliers and black swans are singular,rare, events that carry dramatic impact. They appear in seemingly unconnected systems in the form of oceanic rogue waves, stock market crashes, evolution, and communication systems. Attempts to understand the underlying dynamics of such complex systems that lead to spectacular and often cataclysmic outcomes have been frustrated by the scarcity of events, resulting in insufficient statistical data,and by the inability to perform experiments under controlled conditions. Extreme rare events also occur in ultrafast physical sciences where it is possible to collect large data sets, even for rare events, in a short time period. The knowledge gained from observing rare events in ultrafast systems may provide valuable insight into extreme value phenomena that occur over a much slower timescale and that have a closer connection with human experience. One solution is a real-time ultrafast instrument that is capable of capturing singular and randomly occurring nonrepetitive events. The time stretch technology developed during the past 13 years is providing a powerful tool box for reaching this goal. This paper reviews this technology and discusses its use in capturing rogue events in electronic signals,spectroscopy, and imaging. We show an example in nonlinear optics where it was possible to capture rare and random solitons whose unusual statistical distribution resemble those observed in financial markets. The ability to observe the true spectrum of each event in real time has led to important insight in understanding the underlying process, which in turn has made it possible to control soliton generation leading to improvement in the coherence of supercontinuum light. We also show a new class of fast imagers which are being considered for early detection of cancer because of their potential ability to detect rare diseased cells (so called rogue cells) in a large population of healthy cells.
机译:流氓事件也被称为离群值和黑天鹅,是罕见的罕见事件,具有重大影响。它们以海洋流氓浪潮,股市崩盘,演化和通信系统的形式出现在看似无关的系统中。由于事件的稀缺性,统计数据不足以及无法在受控条件下进行实验,使人们难以理解导致如此复杂而又常常导致灾难性后果的复杂系统的内在动力。极少数事件在超快物理科学中也会发生,即使在极短时间内也可以收集大数据集,即使是极少数事件也是如此。通过观察超快系统中的稀有事件而获得的知识可以为极有价值的现象提供宝贵的见解,这些极值现象发生在很慢的时间范围内,并且与人类经验有着密切的联系。一种解决方案是实时超快仪器,它能够捕获单个和随机发生的非重复事件。过去13年中开发的时间拉伸技术为实现此目标提供了强大的工具箱。本文回顾了该技术,并讨论了其在捕获电子信号,光谱学和成像中的流氓事件中的用途。我们以非线性光学为例,可以捕获稀有和随机孤子,其异常的统计分布类似于在金融市场中观察到的分布。实时观察每个事件的真实光谱的能力已导致在了解基本过程方面具有重要的见识,而这反过来又使得控制孤子的产生成为可能,从而改善了超连续谱光的相干性。我们还显示了一类新型的快速成像仪,这些成像仪由于具有检测大量健康细胞中罕见的病变细胞(所谓的流氓细胞)的潜在能力而被考虑用于癌症的早期检测。

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