A microscopic theory of current partition in fractional quantum Hall liquid
s, described by chiral Luttinger liquids, is developed to compute the noise
correlations, using the Keldysh technique. In this Hanbury-Brown and Twiss
geometry, at Laughlin filling factors upsilon = 1/3, the real time noise c
orrelator exhibits oscillations which persist over larger time scales than
that of an uncorrelated Halt fluid. The zero frequency noise correlations a
re negative at filling factor 1/3 as for bare electrons (antibunching), but
are strongly reduced in amplitude. These correlations become positive (bun
ching) for upsilon less than or equal to 1/5, suggesting a tendency towards
bosonic behavior.