Producing the event ready two photon polarization EPR state with linear optics devices
arXiv:quant-ph/0208166 · doi:10.1103/PhysRevA.68.042304
Abstract
We propose a scheme to produce the maximally two photon polarization entangled state(EPR state) with single photon sources and the linear optics devices. In particular, our scheme requires the photon detectors only to distinguish the vacuum and non-vacuum Fock number states. A sophisticated photon detector distinguishing one or two photon states is unnecessary.
Published in Phys. Rev. A already
References in corpus (8)
- Experimental quantum teleportation
- Triggered single photons from a quantum dot
- Driving non-Gaussian to Gaussian states with linear optics
- A theorem for the beam splitter entangler
- Conditional generation of N-photon entangled states of light
- Linear optics and projective measurements alone suffice to create large-photon-number path entanglement
- The feasible generation of entangled photon states by using linear optical elements
- Quantum filter for non-local polarization properties of photonic qubits
Cited by in corpus (6)
- Distillation of continuous-variable entanglement with optical means
- Optical Nondestructive Controlled-NOT Gate without Using Entangled Photons
- Multiphoton entanglement through a Bell multiport beam splitter
- Heralded Two-Photon Entanglement from Probabilistic Quantum Logic Operations on Multiple Parametric Down-Conversion Sources
- Conditional generation of arbitrary multimode entangled states of light with linear optics
- Push button generation of multiphoton entanglement