1.5um Polarization-Entangled Bell States Generation Based on Birefringence in High Nonlinear Microstructure Fiber
arXiv:0908.1277 · doi:10.1364/OL.34.002706
Abstract
Polarization-entangled photon pair generation based on two scalar scattering processes of the vector four photon scattering has been demonstrated experimentally in high nonlinear microstructure fiber with birefringence. By controlling the pump polarization state, polarization-entangled Bell states can be realized. It is provides a simple way to realize efficient and compact fiber based polarization-entangled photon pair sources.
12 pages, 3 figures, accepted by optics letter
References in corpus (1)
Cited by in corpus (8)
- Quantum thermal transistors: Operation characteristics in steady state versus transient regimes
- Noise Performance Comparison of 1.5 um Correlated Photon Pair Generation in Different Fibers
- Dual-Pump Approach to Photon-Pair Generation: Demonstration of Enhanced Characterization and Engineering Capabilities
- Configurable spatio-temporal properties in a photon-pair source based on spontaneous four wave mixing with multiple transverse modes
- Generation of 1.5 μm discrete frequency entangled two-photon state in polarization maintaining fibers
- A polarization maintaining scheme for 1.5 μm polarization entangled photon pair generation in optical fibers
- Engineering of Hong-Ou-Mandel interference with effective noise
- Experimental Device-Independent Tests of Classical and Quantum Entropy