Quantum parameter estimation has many applications, from gravitational wave detection to quantum key distribution. The most commonly used technique for this type of estimation is quantum filtering, using only past observations. We present the first experimental demonstration of quantum smoothing, a time-symmetric technique that uses past and future observations, for quantum parameter estimation. We consider both adaptive and nonadaptive quantum smoothing, and show that both are better than their filtered counterparts. For the problem of estimating a stochastically varying phase shift on a coherent beam, our theory predicts that adaptive quantum smoothing (the best scheme) gives an estimate with a mean-square error up to 2√2 times smaller th...
Quantum interferences offer the potential for improving the effective resolution wavelength of many ...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
The sensitivity in optical interferometry is strongly affected by propagation or detection. The op...
Quantum parameter estimation has many applications, from gravitational wave detection to quantum key...
We experimentally performed adaptive phase estimation using time-symmetric quantum smoothing for a s...
Adaptive homodyne estimation of a continuously-evolving phase using smoothing was earlier demonstrat...
Quantum parameter estimation is central to many fields such as quantum computation, communications a...
Smoothing is an estimation technique that takes into account both past and future observations and c...
Classical and quantum theories of time-symmetric smoothing, which can be used to optimally estimate ...
Optical phase estimation is a vital measurement strategy that is used to perform accurate measuremen...
We consider the task of estimating the randomly fluctuating phase of a continuous-wave beam of light...
Quantum interferences offer the potential for improving the effective resolution wavelength of many ...
Optical phase estimation is a vital measurement primitive that is used to perform accurate measureme...
Empirical thesis.Bibliography: pages 79-87.1. Introduction -- 2. Loss-resistant unambiguous phase me...
Adaptive techniques make practical many quantum measurements that would otherwise be beyond current ...
Quantum interferences offer the potential for improving the effective resolution wavelength of many ...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
The sensitivity in optical interferometry is strongly affected by propagation or detection. The op...
Quantum parameter estimation has many applications, from gravitational wave detection to quantum key...
We experimentally performed adaptive phase estimation using time-symmetric quantum smoothing for a s...
Adaptive homodyne estimation of a continuously-evolving phase using smoothing was earlier demonstrat...
Quantum parameter estimation is central to many fields such as quantum computation, communications a...
Smoothing is an estimation technique that takes into account both past and future observations and c...
Classical and quantum theories of time-symmetric smoothing, which can be used to optimally estimate ...
Optical phase estimation is a vital measurement strategy that is used to perform accurate measuremen...
We consider the task of estimating the randomly fluctuating phase of a continuous-wave beam of light...
Quantum interferences offer the potential for improving the effective resolution wavelength of many ...
Optical phase estimation is a vital measurement primitive that is used to perform accurate measureme...
Empirical thesis.Bibliography: pages 79-87.1. Introduction -- 2. Loss-resistant unambiguous phase me...
Adaptive techniques make practical many quantum measurements that would otherwise be beyond current ...
Quantum interferences offer the potential for improving the effective resolution wavelength of many ...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
The sensitivity in optical interferometry is strongly affected by propagation or detection. The op...