Conditional preparation of high-fidelity single-photon wavepackets
AIP CONF PROC 734 (2004) 358-361
Abstract:
The reliable generation of true single-photon wavepackets with well-defined modal structure is a crucial ingredient for the realization of linear optical quantum computing. We have implemented a highly efficient waveguided parametric downconversion source pumped by ultrashort pulses, which is characterized by the spatial decoupling of the signal and idler photon while exhibiting a conditional detection efficiency of 51%, corresponding to a preparation efficiency of 85%. We have performed various tests to confirm the single-photon character of the conditionally prepared state.Efficient optical implementation of the Bernstein-Vazirani algorithm - art. no. 010302
PHYSICAL REVIEW A 69:1 (2004) ARTN 010302
Yield and temporal characterization of high-order harmonics from intense midinfrared excitation of a cesium vapor - art. no. 033807
PHYSICAL REVIEW A 69:3 (2004) ARTN 033807
Fiber-assisted detection with photon number resolution.
Opt Lett 28:23 (2003) 2387-2389
Abstract:
We report the development of a photon-number-resolving detector based on a fiber-optical setup and a pair of standard avalanche photodiodes. The detector is capable of resolving individual photon numbers and operates on the well-known principle by which a single-mode input state is split into a large number (eight) of output modes. We reconstruct the photon statistics of weak coherent input light from experimental data and show that there is a high probability of inferring the input photon number from a measurement of the number of detection events on a single run.Photon engineering for quantum information processing
QUANTUM INFORM COMPU 3 (2003) 480-502