We present a fully passive method for implementing a quantum phase gate between two photons travelling in a one-dimensional wave guide. The gate is based on chirally coupled emitters in a three-level $V$ configuration, which only interact through the photon field without any external control fields. We describe the (non-)linear scattering of the emerging polariton states and show that for near resonant photons the scattering dynamics directly implements a perfect control phase gate between the incoming photons in the limit of many emitters. For a finite number of emitters we show that the dominant error mechanism can be suppressed by a simple frequency filter at the cost of a minor reduction in the success probability. We verify the results...
Recent experimental progress has realized strong, efficient coupling of effective two level systems ...
We show that the optical Kerr effect can be used to construct a quantum phase gate. It is well known...
Thesis (PhD)--Macquarie University, Faculty of Science, Dept. of Physics and Astronomy, 2011.Bibliog...
Sorting quantum fields into different modes according to their Fock-space quantum numbers is a highl...
Photonic quantum technology provides a viable route to quantum communication, quantum simulation, an...
We show that a beam splitter of reflectivity one-third can be used to realize a quantum phase gate o...
We investigate the origin of imperfections in the fidelity of a two-photon controlled-phase gate bas...
The exchange of virtual photons between quantum optical emitters in cavity QED or quantum nanophoton...
doi:10.1088/1367-2630/12/4/043052 Abstract. We discuss the scattering of photons from a three-level ...
We propose a protocol for a two-qubit quantum phase gate based upon the reflection of photon pulses ...
We design linear optics multiqubit quantum logic gates. We assume the traditional encoding of a qubi...
The cascade-emitted biphotons generated from the alkali metal atomic ensembles are an excellent enta...
We discuss the scattering of photons from a three-level emitter in a one-dimensional waveguide, wher...
We present a scheme for the experimental realization of a quantum phase gate acting on the polarizat...
Full quantum theory of the optical two-qubit quantum phase gate for single photons is formulated. Tr...
Recent experimental progress has realized strong, efficient coupling of effective two level systems ...
We show that the optical Kerr effect can be used to construct a quantum phase gate. It is well known...
Thesis (PhD)--Macquarie University, Faculty of Science, Dept. of Physics and Astronomy, 2011.Bibliog...
Sorting quantum fields into different modes according to their Fock-space quantum numbers is a highl...
Photonic quantum technology provides a viable route to quantum communication, quantum simulation, an...
We show that a beam splitter of reflectivity one-third can be used to realize a quantum phase gate o...
We investigate the origin of imperfections in the fidelity of a two-photon controlled-phase gate bas...
The exchange of virtual photons between quantum optical emitters in cavity QED or quantum nanophoton...
doi:10.1088/1367-2630/12/4/043052 Abstract. We discuss the scattering of photons from a three-level ...
We propose a protocol for a two-qubit quantum phase gate based upon the reflection of photon pulses ...
We design linear optics multiqubit quantum logic gates. We assume the traditional encoding of a qubi...
The cascade-emitted biphotons generated from the alkali metal atomic ensembles are an excellent enta...
We discuss the scattering of photons from a three-level emitter in a one-dimensional waveguide, wher...
We present a scheme for the experimental realization of a quantum phase gate acting on the polarizat...
Full quantum theory of the optical two-qubit quantum phase gate for single photons is formulated. Tr...
Recent experimental progress has realized strong, efficient coupling of effective two level systems ...
We show that the optical Kerr effect can be used to construct a quantum phase gate. It is well known...
Thesis (PhD)--Macquarie University, Faculty of Science, Dept. of Physics and Astronomy, 2011.Bibliog...