To the best of our knowledge, we demonstrate for the first time the generation of photon number squeezing by spectral filtering for ultra-broadband light generated by microstructure fibers at 800 nm. A maximum squeezing of 4.6 dB is observed, corresponding to 10.3 dB after correcting for detection losses. We numerically analyzed the quantum dynamics of ultrashort laser pulse propagation through optical fibers by solving a nonlinear quantum Schrodinger equation that included Raman scattering, especially for the quantum correlation of photon number fluctuation among frequency modes in broadband pulses.
@article{arxiv.quant-ph/0501043,
title = {Photon number squeezing of ultra-broadband laser pulses generated by microstructure fibers},
author = {K. Hirosawa and H. Furumochi and A. Tada and F. Kannari and M. Takeoka and M. Sasaki},
journal= {arXiv preprint arXiv:quant-ph/0501043},
year = {2009}
}