The effects arising from the inherent continuous-mode nature of photonic pulses were poorly understood but significantly influence the performance of quantum devices employing photonic pulse interaction in nonlinear media. Such effects include the entanglement between the continuous wave-vector modes due to pulse interaction as well as the consequence of a finite system bandwidth. We present an analysis on these effects for interactions between single-photon pulses, demonstrating their impact on the performance of quantum phase gates based on such process. Our study clarifies a realistic picture of this type of quantum devices.5 page(s
Full control over the spatiotemporal structure of quantum states of light is an important goal in qu...
We investigate the single mode operation of a quantum optical nonlinear \pi phase shift gate impleme...
Nonlinear susceptibility of a quantum dot (QD) embedded in a two-sided cavity, is studied theoretica...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
The weak nonlinear Kerr interaction between single photons and intense laser fields has been recentl...
Ideally, strong nonlinearities could be used to implement quantum gates for photonic qubits by well-...
Full quantum theory of the optical two-qubit quantum phase gate for single photons is formulated. Tr...
Typically linear optical quantum computing (LOQC) models assume that all input photons are completel...
Linear optics (LO) is a promising candidate for the implementation of quantum information processing...
We study the effects of arbitrary laser pulse excitations on quantum correlation, entanglement, and ...
International audienceSingle photons constitute a main platform in quantum science and technology: t...
A theory of intracavity nonlinearities for single photon input states shows that there is a source o...
We describe the simplest single-photon encoding schemes and introduce the concept of a quantum optic...
We show that the optical Kerr effect can be used to construct a quantum phase gate. It is well known...
We investigate the single-mode operation of a quantum optical nonlinear π phase-shift gate implement...
Full control over the spatiotemporal structure of quantum states of light is an important goal in qu...
We investigate the single mode operation of a quantum optical nonlinear \pi phase shift gate impleme...
Nonlinear susceptibility of a quantum dot (QD) embedded in a two-sided cavity, is studied theoretica...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
The weak nonlinear Kerr interaction between single photons and intense laser fields has been recentl...
Ideally, strong nonlinearities could be used to implement quantum gates for photonic qubits by well-...
Full quantum theory of the optical two-qubit quantum phase gate for single photons is formulated. Tr...
Typically linear optical quantum computing (LOQC) models assume that all input photons are completel...
Linear optics (LO) is a promising candidate for the implementation of quantum information processing...
We study the effects of arbitrary laser pulse excitations on quantum correlation, entanglement, and ...
International audienceSingle photons constitute a main platform in quantum science and technology: t...
A theory of intracavity nonlinearities for single photon input states shows that there is a source o...
We describe the simplest single-photon encoding schemes and introduce the concept of a quantum optic...
We show that the optical Kerr effect can be used to construct a quantum phase gate. It is well known...
We investigate the single-mode operation of a quantum optical nonlinear π phase-shift gate implement...
Full control over the spatiotemporal structure of quantum states of light is an important goal in qu...
We investigate the single mode operation of a quantum optical nonlinear \pi phase shift gate impleme...
Nonlinear susceptibility of a quantum dot (QD) embedded in a two-sided cavity, is studied theoretica...