All optical detectors to date annihilate photons upon detection, thus excluding repeated measurements. Here, we demonstrate a robust photon detection scheme which does not rely on absorption. Instead, an incoming photon is reflected off an optical resonator containing a single atom prepared in a superposition of two states. The reflection toggles the superposition phase which is then measured to trace the photon. Characterizing the device with faint laser pulses, a single-photon detection efficiency of 74% and a survival probability of 66% is achieved. The efficiency can be further increased by observing the photon repeatedly. The large single-photon nonlinearity of the experiment should enable the development of photonic quantum gates and the preparation of novel quantum states of light.
@article{arxiv.1311.3625,
title = {Nondestructive Detection of an Optical Photon},
author = {Andreas Reiserer and Stephan Ritter and Gerhard Rempe},
journal= {arXiv preprint arXiv:1311.3625},
year = {2013}
}
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published online in Science Express, 14 November 2013