Physical Review Letters · 2022 · 71 citations · 52 references
Quantum PhotonicsEngineeringEntangled Coherent StatesExtreme UltravioletQuantum ComputingHigh Harmonic GenerationQuantum EntanglementQuantum OpticsQuantum SciencePhotonicsPhysicsQuantum InformationTheoretical DemonstrationFar InfraredPhoton StatisticQuantum OpticCoherent State SuperpositionNatural SciencesApplied PhysicsQuantum Communication
We present a theoretical demonstration on the generation of entangled coherent states and of coherent state superpositions, with photon numbers and frequencies orders of magnitude higher than those provided by the current technology. This is achieved by utilizing a quantum mechanical multimode description of the single- and two-color intense laser field driven process of high harmonic generation in atoms. It is found that all field modes involved in the high harmonic generation process are entangled, and upon performing a quantum operation, lead to the generation of high photon number optical cat states spanning from the far infrared to the extreme ultraviolet spectral region. This provides direct insights into the quantum mechanical properties of the optical field in the intense laser matter interaction. Finally, these states can be considered as a new resource for fundamental tests of quantum theory, quantum information processing, or sensing with nonclassical states of light.
52
Quantum computation and quantum information
Jim Law · ACM SIGSOFT Software Engineering Notes · 2001 · 18.8K citations
Robert Raussendorf, Hans J. Briegel · Physical Review Letters · 2001 · 4.4K citations
Theory of high-harmonic generation by low-frequency laser fields
Maciej Lewenstein, Ph. Balcou, Misha Ivanov et al. · Physical Review A · 1994 · 4K citations · Full text