Unconditional and robust quantum metrological advantage beyond NOON states

Jianguang Qin, Yuping Deng,Han-Sen Zhong, Li Peng, Hao Sheng, Yufei Luo,Jiamin Xu,Dian Wu, Si-Qiu Gong,Hua-Liang Liu,Hui Wang,Ming-Cheng Chen,Li Li,Nai-Le Liu,Chao‐Yang Lu,Jian-Wei Pan

arXiv (Cornell University)(2023)

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摘要
Quantum metrology employs quantum resources to enhance the measurement sensitivity beyond that can be achieved classically. While multi-photon entangled NOON states can in principle beat the shot-noise limit and reach the Heisenberg limit, high NOON states are difficult to prepare and fragile to photon loss which hinders it from reaching unconditional quantum metrological advantages. Here, we combine the idea of unconventional nonlinear interferometers and stimulated emission of squeezed light, previously developed for photonic quantum computer Jiuzhang, to propose and realize a new scheme that achieves a scalable, unconditional, and robust quantum metrological advantage. We observe a 5.8(1)-fold enhancement above the shot-noise limit in the Fisher information extracted per photon, without discounting for photon loss and imperfections, which outperforms ideal 5-NOON states. The Heisenberg-limited scaling, the robustness to external photon loss, and the ease-to-use of our method make it applicable in practical quantum metrology at low photon flux regime.
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关键词
robust quantum,metrological advantage,noon
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