Distributed Quantum Metrology and the Entangling Power of Linear Networks
arXiv:1707.06655 · doi:10.1103/PhysRevLett.121.043604
Abstract
We derive a bound on the ability of a linear optical network to estimate a linear combination of independent phase shifts by using an arbitrary non-classical but unentangled input state, thereby elucidating the quantum resources required to obtain the Heisenberg limit with a multi-port interferometer. Our bound reveals that while linear networks can generate highly entangled states, they cannot effectively combine quantum resources that are well distributed across multiple modes for the purposes of metrology: in this sense linear networks endowed with well-distributed quantum resources behave classically. Conversely, our bound shows that linear networks can achieve the Heisenberg limit for distributed metrology when the input photons are hoarded in a small number of input modes, and we present an explicit scheme for doing so. Our results also have implications for measures of non-classicality.
9 pages, 2 figures
References in corpus (14)
- Photonic Boson Sampling in a Tunable Circuit
- Mach-Zehnder Interferometry at the Heisenberg Limit with coherent and squeezed-vacuum light
- A computable measure of nonclassicality for light
- Multi-parameter estimation in networked quantum sensors
- An avalanche-photodiode-based photon-number-resolving detector
- Optimal measurements for simultaneous quantum estimation of multiple phases
- Linear Optical Quantum Metrology with Single Photons: Exploiting Spontaneously Generated Entanglement to Beat the Shot-Noise Limit
- All path-symmetric pure states achieve their maximal phase sensitivity in conventional two-path interferometry
- Quantum interferometry with three-dimensional geometry
- Experimental generation of multi-photon Fock states
- Squeezed vacuum as a universal quantum probe
- Quantum correlations in optical metrology: Heisenberg-limited phase estimation without mode entanglement
- Multiphoton interference in quantum Fourier transform circuits and applications to quantum metrology
- Networked quantum sensing
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