Entanglement-enhanced two-photon delocalization in a coupled-cavity array
arXiv:1412.0189 · doi:10.1088/0256-307X/32/4/040303
Abstract
We study transport properties of two entangled photons which are initially injected into two nearest-neighbor coupling cavities in a one-dimensional coupled-cavity array (CCA). It is found that photonic transport dynamics in the two-photon CCA exhibits entanglement-enhanced two-photon delocalization (TPD) phenomenon. It is shown that the CCA can realize the localization-to-delocalization transition for two entangled photons.
4 pages, 3 figures
References in corpus (12)
- Quantum nature of a strongly-coupled single quantum dot-cavity system
- Strongly Interacting Polaritons in Coupled Arrays of Cavities
- Quantum phase transitions of light
- Photon blockade induced Mott transitions and XY spin models in coupled cavity arrays
- Quantum Many-Body Phenomena in Coupled Cavity Arrays
- Effective spin systems in coupled micro-cavities
- Dynamics in a coupled-cavity array
- Many-body phenomena in QED-cavity arrays
- Controlling Quasibound States in 1D Continuum Through Electromagnetic Induced Transparency Mechanism
- Transport and Quantum Walk of Nonclassical Light in Coupled Waveguides
- Coherent control of photon transmission : slowing light in coupled resonator waveguide doped with Atoms
- Coupled cavity QED for coherent control of photon transmission (I): Green function approach for hybrid systems with two-level doping