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QuantEYE: A Quantum Optics Instrument for Extremely Large Telescopes

机译:Quanteye:非常大望远镜的量子光学仪器

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We have carried out a conceptual study for an instrument (QuantEYE)) capable to detect and measure photon-stream statistics, e.g. power spectra or autocorrelation functions. Such functions increase with the square of the detected signal, implying an enormously increased sensitivity at the future Extremely Large Telescopes, such as the Overwhelmingly Large (OWL) telescope of the European Southern Observatory (ESO). Furthermore, QuantEYE will have the capability of exploring astrophysical variability on microsecond and nanosecond scales, down to the quantum-optical limit. Expected observable phenomena include instabilities of photon-gas bubbles in accretion flows, p-mode oscillations in neutron stars, and quantum-optical photon bunching in time. This paper describes QuantEYE, an instrument aimed to realize the just described science, proposed for installation at the ESO OWL telescope focal plane. The adopted optical solution is relatively simple and possible with actual technologies, the main constraint essentially being the present limited availability of very fast photon counting detector arrays. Also some possible alternative designs are described, assuming a future technology development of fast photon counting detector arrays.
机译:我们对能够检测和测量光子流统计的仪器(Quanteye)进行了概念研究,例如,功率谱或自相关函数。这些功能随检测到的信号的平方增加,暗示未来极大的望远镜在未来极大的望远镜上的敏感性,例如欧洲南部观测所(ESO)的压倒性大(猫头鹰)望远镜。此外,Quanteye将具有在微秒和纳秒尺度上探索天体物理变异性的能力,降低到量子光学限制。预期的可观察现象包括增齿流量的光子 - 气泡的稳定性,中子恒星中的P模式振荡,以及串联串联的量子光学光子。本文描述了Quanteye,旨在实现刚刚描述的科学的仪器,建议在ESO猫头鹰望远镜焦平面上安装。采用的光学解决方案是相对简单且可能的实际技术,主要约束基本上是非常快速光子计数探测器阵列的当前限量可用性。还描述了一些可能的替代设计,假设未来的快速光子计数探测器阵列的技术开发。

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