Entangled multiphoton states have the potential to provide improved measurement accuracy, but are sensitive to photon loss. It is possible to calculate ideal loss-resistant states that maximize the Fisher information, but it is unclear how these could be experimentally generated. Here we propose a set of states that can be obtained by processing the output from parametric down-conversion. Although these states are not optimal, they provide performance very close to that of optimal states for a range of parameters. Moreover, we show how to use sequences of such states in order to obtain an unambiguous phase measurement that beats the standard quantum limit. We consider the optimization of parameters in order to minimize the final phase varia...
It is known that the phase measurement using lossless Mach-Zehnder interferometer with certain entan...
In optical interferometry path-entangled states such as NOON states have shown to give quantum-enhan...
By using a systematic optimization approach, we determine quantum states of light with definite phot...
We present the theory of how to achieve phase measurements with the minimum possible variance in way...
Quantum entanglement offers the possibility of making measurements beyond the classical limit, howev...
A quantum theory of multiphase estimation is crucial for quantum-enhanced sensing and imaging and ma...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
Traditionally, spectroscopy is performed by examining the position of absorption lines. However, at ...
We give a detailed discussion of optimal quantum states for optical two-mode interferometry in the p...
Empirical thesis.Bibliography: pages 79-87.1. Introduction -- 2. Loss-resistant unambiguous phase me...
Precise interferometric measurement is vital to many scientific and technological applications. Usin...
To acquire the best path-entangled photon Fock states for robust quantum-optical metrology with pari...
We optimize two-mode entangled number states of light in the presence of loss in order to maximize t...
International audienceMach-Zehnder interferometer is a common device in quantum phase estimation and...
It is known that the phase measurement using lossless Mach-Zehnder interferometer with certain entan...
In optical interferometry path-entangled states such as NOON states have shown to give quantum-enhan...
By using a systematic optimization approach, we determine quantum states of light with definite phot...
We present the theory of how to achieve phase measurements with the minimum possible variance in way...
Quantum entanglement offers the possibility of making measurements beyond the classical limit, howev...
A quantum theory of multiphase estimation is crucial for quantum-enhanced sensing and imaging and ma...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
Traditionally, spectroscopy is performed by examining the position of absorption lines. However, at ...
We give a detailed discussion of optimal quantum states for optical two-mode interferometry in the p...
Empirical thesis.Bibliography: pages 79-87.1. Introduction -- 2. Loss-resistant unambiguous phase me...
Precise interferometric measurement is vital to many scientific and technological applications. Usin...
To acquire the best path-entangled photon Fock states for robust quantum-optical metrology with pari...
We optimize two-mode entangled number states of light in the presence of loss in order to maximize t...
International audienceMach-Zehnder interferometer is a common device in quantum phase estimation and...
It is known that the phase measurement using lossless Mach-Zehnder interferometer with certain entan...
In optical interferometry path-entangled states such as NOON states have shown to give quantum-enhan...
By using a systematic optimization approach, we determine quantum states of light with definite phot...