We present a new procedure for quantum state reconstruction based on weak continuous measurement of an ensemble average. By applying controlled evolution to the initial state new information is continually mapped onto the measured observable. A Bayesian filter is then used to update the state-estimate in accordance with the measurement record. This generalizes the standard paradigm for quantum tomography based on strong, destructive measurements on separate ensembles. This approach to state estimation can be non-destructive and real-time, giving information about observables whose evolution cannot be described classically, opening the door to new types of quantum feedback control
Precise reconstruction of unknown quantum states from measurement data, a process commonly called qu...
© 2014 American Physical Society. We introduce a self-learning tomographic technique in which the ex...
We significantly extend recently developed methods to faithfully reconstruct unknown quantum states ...
Quantum state tomography is a fundamental tool in quantum information processing tasks. It allows us...
We study quantum tomography based on a stochastic continuous-time measurement record obtained from a...
International audienceTomography of a quantum state is usually based on a positive-operator-valued m...
Abstract. In projective quantum measurements, the state of a system collapses and cannot be reused f...
We study in detail the reconstruction of spin-12 states and analyze the connection between (1) quant...
Quantum state tomography (QST) is essential for characterizing unknown quantum states. Several metho...
In recent years, the scientifical community has succeeded in experimentally building simple quantum ...
Given the state of a quantum system, one can calculate the expectation value of any observable of th...
The standard quantum formalism introduced at the undergraduate level treats measurement as an instan...
The quantum evolution of an individual solid-state qubit during the process of its continuous measur...
peer reviewedWe propose a scheme for the reconstruction of the quantum state without a priori knowle...
Tomography of a quantum state is usually based on a positive-operator-valued measure (POVM) and on t...
Precise reconstruction of unknown quantum states from measurement data, a process commonly called qu...
© 2014 American Physical Society. We introduce a self-learning tomographic technique in which the ex...
We significantly extend recently developed methods to faithfully reconstruct unknown quantum states ...
Quantum state tomography is a fundamental tool in quantum information processing tasks. It allows us...
We study quantum tomography based on a stochastic continuous-time measurement record obtained from a...
International audienceTomography of a quantum state is usually based on a positive-operator-valued m...
Abstract. In projective quantum measurements, the state of a system collapses and cannot be reused f...
We study in detail the reconstruction of spin-12 states and analyze the connection between (1) quant...
Quantum state tomography (QST) is essential for characterizing unknown quantum states. Several metho...
In recent years, the scientifical community has succeeded in experimentally building simple quantum ...
Given the state of a quantum system, one can calculate the expectation value of any observable of th...
The standard quantum formalism introduced at the undergraduate level treats measurement as an instan...
The quantum evolution of an individual solid-state qubit during the process of its continuous measur...
peer reviewedWe propose a scheme for the reconstruction of the quantum state without a priori knowle...
Tomography of a quantum state is usually based on a positive-operator-valued measure (POVM) and on t...
Precise reconstruction of unknown quantum states from measurement data, a process commonly called qu...
© 2014 American Physical Society. We introduce a self-learning tomographic technique in which the ex...
We significantly extend recently developed methods to faithfully reconstruct unknown quantum states ...