We present a scalable method for the tomography of large multiqubit quantum registers. It acquires information about the permutationally invariant part of the density operator, which is a good approximation to the true state in many relevant cases. Our method gives the best measurement strategy to minimize the experimental effort as well as the uncertainties of the reconstructed density matrix. We apply our method to the experimental tomography of a photonic four-qubit symmetric Dicke state. © 2010 The American Physical Society
© 2016 American Physical Society. We examine the problem of finding the minimum number of Pauli meas...
Quantum state tomography is a powerful, but resource-intensive, general solution for numerous quantu...
Quantum computers solve ever more complex tasks using steadily growing system sizes. Characterizing ...
Feasible tomography schemes for large particle numbers must possess, besides an appropriate data acq...
Quantum information systems are on a path to vastly exceed the complexity of any classical device. T...
Feasible tomography schemes for large particle numbers must possess, besides an appropriate data acq...
© 2018, The Author(s). Quantum information systems are on a path to vastly exceed the complexity of ...
We discuss the tomography of N-qubit states using collective measurements. The method is exact for s...
We formulate a method of quantum tomography that scales linearly with the number of photons and invo...
Recently quantum tomography has been proposed as a fundamental tool for prototyping a few qubit quan...
Recently quantum tomography has been proposed as a fundamental tool for prototyping a few qubit quan...
Quantum state tomography-deducing quantum states from measured data-is the gold standard for verific...
Quantum computation - the use of quantum systems as bits, or qubits, to perform computation - has be...
Quantum computation - the use of quantum systems as bits, or qubits, to perform computation - has be...
© 2017 IEEE. We formulate a method of quantum tomography that scales linearly with the number of pho...
© 2016 American Physical Society. We examine the problem of finding the minimum number of Pauli meas...
Quantum state tomography is a powerful, but resource-intensive, general solution for numerous quantu...
Quantum computers solve ever more complex tasks using steadily growing system sizes. Characterizing ...
Feasible tomography schemes for large particle numbers must possess, besides an appropriate data acq...
Quantum information systems are on a path to vastly exceed the complexity of any classical device. T...
Feasible tomography schemes for large particle numbers must possess, besides an appropriate data acq...
© 2018, The Author(s). Quantum information systems are on a path to vastly exceed the complexity of ...
We discuss the tomography of N-qubit states using collective measurements. The method is exact for s...
We formulate a method of quantum tomography that scales linearly with the number of photons and invo...
Recently quantum tomography has been proposed as a fundamental tool for prototyping a few qubit quan...
Recently quantum tomography has been proposed as a fundamental tool for prototyping a few qubit quan...
Quantum state tomography-deducing quantum states from measured data-is the gold standard for verific...
Quantum computation - the use of quantum systems as bits, or qubits, to perform computation - has be...
Quantum computation - the use of quantum systems as bits, or qubits, to perform computation - has be...
© 2017 IEEE. We formulate a method of quantum tomography that scales linearly with the number of pho...
© 2016 American Physical Society. We examine the problem of finding the minimum number of Pauli meas...
Quantum state tomography is a powerful, but resource-intensive, general solution for numerous quantu...
Quantum computers solve ever more complex tasks using steadily growing system sizes. Characterizing ...