Quantum enhanced multiple-phase estimation with multi-mode N00N states

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作者
Seongjin Hong
Junaid ur Rehman
Yong-Su Kim
Young-Wook Cho
Seung-Woo Lee
Hojoong Jung
Sung Moon
Sang-Wook Han
Hyang-Tag Lim
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[1] Korea Institute of Science and Technology (KIST),Center for Quantum Information
[2] Kyung Hee University,Department of Electronics and Information Convergence Engineering
[3] KIST School,Division of Nano and Information Technology
[4] Korea University of Science and Technology,Department of Physics
[5] Yonsei University,undefined
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Quantum metrology can achieve enhanced sensitivity for estimating unknown parameters beyond the standard quantum limit. Recently, multiple-phase estimation exploiting quantum resources has attracted intensive interest for its applications in quantum imaging and sensor networks. For multiple-phase estimation, the amount of enhanced sensitivity is dependent on quantum probe states, and multi-mode N00N states are known to be a key resource for this. However, its experimental demonstration has been missing so far since generating such states is highly challenging. Here, we report generation of multi-mode N00N states and experimental demonstration of quantum enhanced multiple-phase estimation using the multi-mode N00N states. In particular, we show that the quantum Cramer-Rao bound can be saturated using our two-photon four-mode N00N state and measurement scheme using a 4 × 4 multi-mode beam splitter. Our multiple-phase estimation strategy provides a faithful platform to investigate multiple parameter estimation scenarios.
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