most citedSuper- and subradiant emission of two-level systems in the near-Dicke limit

23 citations · 63 across the 5 of their papers we have counts for

collaborators

5 papers

quant-ph20082 cited

Spontaneous emission of atomic systems in the presence of incident fields

Peter G. Brooke

We characterise the spontaneous emission time and direction from small numbers of dipole-coupled two-level atoms (2LAs) in the presence of incident fields. We show how to use adiab…

quant-ph20089 cited

Decoherence-free quantum information in Markovian systems

Manas K. Patra, Peter G. Brooke

Decoherence in Markovian systems can result indirectly from the action of a system Hamiltonian which is usually fixed and unavoidable. Here, we show that in general in Markovian sy…

quant-ph20089 cited

Decoherence-free quantum information in the presence of dynamical evolution

Peter G. Brooke, James D. Cresser, Manas K. Patra

We analyze decoherence-free (DF) quantum information in the presence of an arbitrary non-nearest-neighbor bath-induced system Hamiltonian using a Markovian master equation. We show…

quant-ph200723 cited

Super- and subradiant emission of two-level systems in the near-Dicke limit

Peter G. Brooke, Karl-Peter Marzlin, James D. Cresser +1

We analyze the stability of super- and subradiant states in a system of identical two-level atoms in the near-Dicke limit, i.e., when the atoms are very close to each other compare…

quant-ph200720 cited

Decoherence-free quantum-information processing using dipole-coupled qubits

Peter G. Brooke

We propose a quantum-information processor that consists of decoherence-free logical qubits encoded into arrays of dipole-coupled qubits. High-fidelity single-qubit operations are…