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20012005
most citedFault-Tolerant Quantum Dynamical Decoupling

586 citations · 2.4k across the 20 of their papers we have counts for

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11 papers · 2 filters

quant-ph2004

Encoding a qubit into multilevel subspaces

Matthew Grace, Constantin Brif, Herschel Rabitz +3

We present a formalism for encoding the logical basis of a qubit into subspaces of multiple physical levels. The need for this multilevel encoding arises naturally in situations wh…

quant-ph20042 cited

Stabilizing qubit coherence via tracking-control

Daniel A. Lidar, Sara Schneider

We consider the problem of stabilizing the coherence of a single qubit subject to Markovian decoherence, via the application of a control Hamiltonian, without any additional resour…

quant-ph200439 cited

Robustness of multi-qubit entanglement in the independent decoherence model

Somshubhro Bandyopadhyay, Daniel A. Lidar

We study the robustness of the GHZ (or ``cat'') class of multi-partite states under decoherence. The noise model is described by a general completely positive map for qubits indepe…

quant-ph2004586 cited

Fault-Tolerant Quantum Dynamical Decoupling

K. Khodjasteh, D. A. Lidar

Dynamical decoupling pulse sequences have been used to extend coherence times in quantum systems ever since the discovery of the spin-echo effect. Here we introduce a method of rec…

quant-ph2004495 cited

Quantum Phase Transitions and Bipartite Entanglement

Lian-Ao Wu, Marcelo S. Sarandy, Daniel A. Lidar

We develop a general theory of the relation between quantum phase transitions (QPTs) characterized by nonanalyticities in the energy and bipartite entanglement. We derive a functio…

quant-ph200430 cited

Fault-Tolerant Quantum Computation via Exchange interactions

M. Mohseni, D. A. Lidar

Quantum computation can be performed by encoding logical qubits into the states of two or more physical qubits, and controlling a single effective exchange interaction and possibly…