Expand this Topic clickable element to expand a topic
Skip to content
Optica Publishing Group
  • XVIII International Quantum Electronics Conference
  • Technical Digest Series (Optica Publishing Group, 1992),
  • paper FrK5

High Resolution Single-Photon Propagation Time Measurement and Nonlocal Cancellation of Group Velocity Dispersion

Not Accessible

Your library or personal account may give you access

Abstract

In the process of spontaneous parametric down-conversion, conjugate pairs of broadband photons are emitted simultaneously from a nonlinear crystal. We use coincidence detection in a fourth-order interferometer to measure the porpagation delay of one photon with respect to that of its conjugate. One photon of every pair enters each arm of the interferometer, and when the path-length difference is adjusted such that the two photons meet essentially simultaneously at the output beam-splitter, a dip is observed in the coincidence rate between photon counters placed at the two output ports. In our experiment, the rms width of this dip is ≈ 15fsec. By placing various dielectric media in the path of one of the photons and then adjusting the free-space path lengths until the coincidence dip reappears, we have measured the propagation time of single photons, and found it to agree with predictions based on the group velocity.

© 1992 IQEC

PDF Article
More Like This
Four-femtosecond propagation time measurement on single photons and nonlocal cancellation of group velocity dispersion

A. M. Steinberg, P. G. Kwiat, and R. Y. Chiao
FF3 OSA Annual Meeting (FIO) 1992

An energy–time Bell inequality in two-photon interferometry

P. G. Kwiat, A. M. Steinberg, and R. Y. Chiao
MUU5 OSA Annual Meeting (FIO) 1992

Nonlocal Dispersion Cancellation using Entangled Photons

So-Young Baek, Young-Wook Cho, and Yoon-Ho Kim
JWA84 Conference on Lasers and Electro-Optics (CLEO:S&I) 2009

Select as filters


Select Topics Cancel
© Copyright 2024 | Optica Publishing Group. All rights reserved, including rights for text and data mining and training of artificial technologies or similar technologies.