We prove kT factorization theorem in perturbative QCD (PQCD) for exclusive
processes by considering πγ∗→γ(π) and B→γ(π)lνˉ. The relevant form factors are expressed as the convolution of hard
amplitudes with two-parton meson wave functions in the impact parameter b
space, b being conjugate to the parton transverse momenta kT. The point is
that on-shell valence partons carry longitudinal momenta initially, and acquire
kT through collinear gluon exchanges. The b-dependent two-parton wave
functions with an appropriate path for the Wilson links are gauge-invariant.
The hard amplitudes, defined as the difference between the parton-level
diagrams of on-shell external particles and their collinear approximation, are
also gauge-invariant. We compare the predictions for two-body nonleptonic B
meson decays derived from kT factorization (the PQCD approach) and from
collinear factorization (the QCD factorization approach).Comment: 11 pages, REVTEX, 5 figure