Temporal waveform of photons from spontaneous emission can be arbitrarily controlled by amplitude and phase-parity modulation of the excitation field, shown numerically and in a trapped ion.
Protocols and Techniques for a Scalable Atom--Photon Quantum Network
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
Quantum networks based on atomic qubits and scattered photons provide a promising way to build a large-scale quantum information processor. We review quantum protocols for generating entanglement and operating gates between two distant atomic qubits, which can be used for constructing scalable atom--photon quantum networks. We emphasize the crucial role of collecting light from atomic qubits for large-scale networking and describe two techniques to enhance light collection using reflective optics or optical cavities. A brief survey of some applications for scalable and efficient atom--photon networks is also provided.
fields
physics.atom-ph 1years
2025 1verdicts
CONDITIONAL 1representative citing papers
citing papers explorer
-
Arbitrary control of the temporal waveform of photons during spontaneous emission
Temporal waveform of photons from spontaneous emission can be arbitrarily controlled by amplitude and phase-parity modulation of the excitation field, shown numerically and in a trapped ion.