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Enhancement of activated decay of metastable states by resonant pumping
Authors:V I Mel'nikov
Institution:(1) Landau Institute for Theoretical Physics, 117334 Moscow, Russia
Abstract:We consider the effect of a high-frequency pumping Escr cosohgrt on the escape rate of a classical underdamped Brownian particle out of a deep potential well. The energy dependence of the oscillation frequencyohgr(E) is assumed to be weak on the scale of thermal energy,ohgrprimeE(0)Tsimohgr(0)T/V0 Lt(0)ohgrprimeE(0) is the derivative ofohgr(E) atE= 0,V 0 is the barrier height,V 0 Gt T]. The quadratic-in-Escr contribution to the decay rate is calculated in two different regimes: (1) for the case of resonance of the pumping frequency with the nth harmonic of the internal motion at an energye, whenohgr = nohgr(e); (2) for a rollout region of the basic resonance near the bottom of the potential well, when ¦ohgr-ohgr(0)¦ simgamma and gamma is the damping coefficient. In the latter case the absorption spectrum and the enhancement of the decay rate are calculated as functions of two reduced parameters, the anharmonicity of the potential,vequivohgrprime E (0)T/gamma, and the resonance mismatch,delta equiv ohgrohgr(0)]/gamma. It is shown that the effect of the pumping increases with diminishing ¦v¦ and at small v is proportional tov –1. In this regime, the dependence ondelta is stepwise: the pumping contribution is large for vdelta > 0 and small for vdelta < 0. In the frame of our theory, the decay rate is invariant against the simultaneous alternation of the signs ofdelta andv. The spectrum of the energy absorption has the standard Lorentzian shape in the absence of anharmonicity,v=0, and with increasing of ¦v¦ shifts and widens retaining its bell-shape form.
Keywords:Metastable states  activated decay  resonant pumping  energy diffusion  Fokker-Planck equation
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