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Phys. Rev. Lett. 107, 100502 (2011) [5 pages]

Selective and Efficient Quantum Process Tomography without Ancilla

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Christian Tomás Schmiegelow1, Ariel Bendersky1, Miguel Antonio Larotonda2, and Juan Pablo Paz1
1Departamento de Física & IFIBA, FCEyN, UBA, Pabellón 1, Ciudad Universitaria, 1428 Buenos Aires, Argentina
2CEILAP, CITEDEF, J.B. de La Salle 4397, 1603 Villa Martelli, Buenos Aires, Argentina

Received 10 February 2011; published 1 September 2011

Several methods, known as quantum process tomography, are available to characterize the evolution of quantum systems, a task of crucial importance. However, their complexity dramatically increases with the size of the system. Here we present a new method for quantum process tomography. We describe a new algorithm that can be used to selectively estimate any parameter characterizing a quantum process. Unlike any of its predecessors this new quantum tomographer combines two virtues: it requires investing a number of physical resources scaling polynomially with the number of qubits and at the same time it does not require any ancillary resources. We present the results of the first implementation of this quantum device, characterizing quantum processes affecting two qubits encoded in heralded single photons. Even for this small system our method displays clear advantages over the other existing ones.

© 2011 American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevLett.107.100502
DOI:
10.1103/PhysRevLett.107.100502
PACS:
03.67.Lx, 03.65.Wj, 42.50.Dv, 42.65.Lm