We numerically examine slow and hierarchical relaxation dynamics of
interacting bosons described by a tilted two-band Bose-Hubbard model. The
system is found to exhibit signatures of quantum chaos within the spectrum and
the validity of the eigenstate thermalization hypothesis for relevant physical
observables is demonstrated for certain parameter regimes. Using the truncated
Wigner representation in the semiclassical limit of the system, dynamics of
relevant observables reveal hierarchical relaxation and the appearance of
prethermalized states is studied from the perspective of statistics of the
underlying mean-field trajectories. The observed prethermalization scenario can
be attributed to different stages of glassy dynamics in the mode-time
configuration space due to dynamical phase transition between ergodic and
nonergodic trajectories.Comment: 13 pages, 15 figure