首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Super-resolution at the shot-noise limit with coherent states and photon-number-resolving detectors
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Super-resolution at the shot-noise limit with coherent states and photon-number-resolving detectors

机译:具有相干态和光子数分辨探测器的散粒噪声极限超分辨率

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摘要

There has been much recent interest in quantum optical interferometry for applications to metrology, subwavelength imaging, and remote sensing such as in quantum laser radar (LADAR). For quantum LADAR, atmospheric absorption rapidly degrades any quantum state of light, so that for high-photon loss the optimal strategy is to transmit coherent states of light, which suffer no worse loss than the Beer law for classical optical attenuation, and which provides sensitivity at the shot-noise limit. We show that coherent light coupled with photon-number-resolving detectors can provide a super-resolution much below the Rayleigh diffraction limit, with sensitivity no worse than shot noise in terms of the detected photon power.
机译:量子光学干涉测量技术已被广泛应用于计量,亚波长成像和遥感等领域,例如量子激光雷达(LADAR)。对于量子LADAR,大气吸收会迅速使光的任何量子态退化,因此,对于高光子损耗,最佳策略是传输相干光态,该相干态的损耗不会比经典光学衰减的比尔定律更糟,并且提供了灵敏度在散粒噪声极限。我们表明,相干光与光子数解析探测器耦合可以提供远低于瑞利衍射极限的超分辨率,就检测到的光子功率而言,灵敏度不比散粒噪声差。

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