We realize on an atom-chip, a practical, experimentally undemanding, tomographic reconstruction algorithm relying on the time-resolved measurements of the atomic population distribution among atomic internal states. More specifically, we estimate both the state density matrix, as well as the dephasing noise present in our system, by assuming complete knowledge of the Hamiltonian evolution. The proposed scheme is based on routinely performed measurements and established experimental procedures, hence providing a simplified methodology for quantum technological applications
In this study, we present a new procedure for quantum state reconstruction of qudit quantum state ba...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 1999.Measuring the density operator o...
We investigate the possibilities of controlling and reconstructing the state of a single three-level...
We propose a tomographic scheme to reconstruct the quantum state of a Bose-Einstein condensate, exp...
peer reviewedWe propose a scheme for the reconstruction of the quantum state without a priori knowle...
Reconstruction of a quantum state is of prime importance for quantum-information science. Specifical...
Quantum state tomography is the task of inferring the state of a quantum system by appropriate measu...
The density matrix of a two-level system (spin, atom) is usually determined by measuring the three n...
The tomographic reconstruction of the state of a quantum-mechanical system is an essential component...
Quantum state tomography is a fundamental tool in quantum information processing tasks. It allows us...
Given a single copy of an unknown quantum state, the no-cloning theorem limits the amount of informa...
Neutral atom systems are an appealing platform for the development and testing of quantum control an...
Reconstructing quantum states is an important task for various emerging quantum technologies. The pr...
We present a new procedure for quantum state reconstruction based on weak continuous measurement of ...
Full quantum state tomography (FQST) plays a unique role in the estimation of the state of a quantum...
In this study, we present a new procedure for quantum state reconstruction of qudit quantum state ba...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 1999.Measuring the density operator o...
We investigate the possibilities of controlling and reconstructing the state of a single three-level...
We propose a tomographic scheme to reconstruct the quantum state of a Bose-Einstein condensate, exp...
peer reviewedWe propose a scheme for the reconstruction of the quantum state without a priori knowle...
Reconstruction of a quantum state is of prime importance for quantum-information science. Specifical...
Quantum state tomography is the task of inferring the state of a quantum system by appropriate measu...
The density matrix of a two-level system (spin, atom) is usually determined by measuring the three n...
The tomographic reconstruction of the state of a quantum-mechanical system is an essential component...
Quantum state tomography is a fundamental tool in quantum information processing tasks. It allows us...
Given a single copy of an unknown quantum state, the no-cloning theorem limits the amount of informa...
Neutral atom systems are an appealing platform for the development and testing of quantum control an...
Reconstructing quantum states is an important task for various emerging quantum technologies. The pr...
We present a new procedure for quantum state reconstruction based on weak continuous measurement of ...
Full quantum state tomography (FQST) plays a unique role in the estimation of the state of a quantum...
In this study, we present a new procedure for quantum state reconstruction of qudit quantum state ba...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 1999.Measuring the density operator o...
We investigate the possibilities of controlling and reconstructing the state of a single three-level...