© 2018 The Author(s). Published by IOP Publishing Ltd on behalf of Deutsche Physikalische Gesellschaft. As commonly understood, the noise spectroscopy problem - characterizing the statistical properties of a noise process affecting a quantum system by measuring its response - is mathematically ill-posed, in the sense that no unique noise process leads to a set of responses unless extra assumptions are taken into account. Ad-hoc solutions assume an implicit structure, which is often never determined. Thus, it is unclear when the method will succeed or whether one should trust the solution obtained. Here, we propose to treat the problem from the point of view of statistical estimation theory. We develop a Bayesian solution to the problem whic...
We compare the accuracy, precision, and reliability of different methods for estimating key system p...
Achieving precise control over quantum systems has groundbreaking ap-plications, such as simulating ...
Understanding the physical origin of noise affecting quantum systems is important for nearly every q...
As commonly understood, the noise spectroscopy problem—characterizing the statistical properties of...
Quantum computers promise a considerable speedup over classical computers in solving various classes...
The ability to use quantum technology to achieve useful tasks, be they scientific or industry relate...
Quantum-enabled technologies promise advancements across a huge range of industrial, metrological an...
International audienceControl of quantum systems is a central element of high-precision experiments ...
International audienceControl of quantum systems is a central element of high-precision experiments ...
International audienceControl of quantum systems is a central element of high-precision experiments ...
International audienceControl of quantum systems is a central element of high-precision experiments ...
© 2020, The Author(s). The ability to use quantum technology to achieve useful tasks, be they scient...
We compare the accuracy, precision, and reliability of different methods for estimating key system p...
We compare the accuracy, precision, and reliability of different methods for estimating key system p...
We compare the accuracy, precision, and reliability of different methods for estimating key system p...
We compare the accuracy, precision, and reliability of different methods for estimating key system p...
Achieving precise control over quantum systems has groundbreaking ap-plications, such as simulating ...
Understanding the physical origin of noise affecting quantum systems is important for nearly every q...
As commonly understood, the noise spectroscopy problem—characterizing the statistical properties of...
Quantum computers promise a considerable speedup over classical computers in solving various classes...
The ability to use quantum technology to achieve useful tasks, be they scientific or industry relate...
Quantum-enabled technologies promise advancements across a huge range of industrial, metrological an...
International audienceControl of quantum systems is a central element of high-precision experiments ...
International audienceControl of quantum systems is a central element of high-precision experiments ...
International audienceControl of quantum systems is a central element of high-precision experiments ...
International audienceControl of quantum systems is a central element of high-precision experiments ...
© 2020, The Author(s). The ability to use quantum technology to achieve useful tasks, be they scient...
We compare the accuracy, precision, and reliability of different methods for estimating key system p...
We compare the accuracy, precision, and reliability of different methods for estimating key system p...
We compare the accuracy, precision, and reliability of different methods for estimating key system p...
We compare the accuracy, precision, and reliability of different methods for estimating key system p...
Achieving precise control over quantum systems has groundbreaking ap-plications, such as simulating ...
Understanding the physical origin of noise affecting quantum systems is important for nearly every q...