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Quantum metrology theory has up to now focused on the resolution gains obtainable thanks to the entanglement among N probes.
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1996
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1998
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2004
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V. Giovannetti, S. Lloyd, L. Maccone, Quantum metrology, Phys. Rev. Lett. 96
2006
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L. Pezzé, A. Smerzi, Mach-Zehnder Interferometry at the Heisenberg Limit with Coherent and Squeezed-Vacuum Light, Phys. Rev. Lett. 100
2008
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R. Demkowicz-Dobrzanski, J. Koldynski, M. Guta, The elusive Heisenberg limit in quantum-enhanced metrology, Nature Comm. 3
2012
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2014
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G. Toth, I. Apellaniz, Quantum metrology from a quantum information science perspective, J. Phys. A: Math Th. 47
2014
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A.I. Lvovsky, Squeezed light, in Photonics Volume 1: Fundamentals of Photonics and Physics, pg. 121 (Wiley, 2015)
2015
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A. De Pasquale, P. Facchi, G. Florio, V. Giovannetti, K. Matsuoka, K. Yuasa, Two-mode bosonic quantum metrology with number fluctuations Phys. Rev. A 92
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B.E. Anderson, B.L. Schmittberger, P. Gupta, K.M. Jones, P.D. Lett, Optimal phase measurements with bright- and vacuum-seeded SU(1,1) interferometers, Phys. Rev. A 95
2017
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D.S. Simon, G. Jaeger, A.V. Sergienko, Quantum Metrology, Imaging, and Communication
2017
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J. Flórez, E. Giese, D. Curic, L. Giner, R.W. Boyd, J.S. Lundeen, The phase sensitivity of a fully quantum three-mode nonlinear interferometer, New J. Phys. 20
2018
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T. Matsubara, P. Facchi, V. Giovannetti, K. Yuasa, Optimal Gaussian Metrology for Generic Multimode Interferometric Circuit, New J. Phys. 21
2019
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