English

Low Energy Behavior of Quantum Adsorption

Condensed Matter 2007-05-23 v1

Abstract

We present an exact solution of a 1D model: a particle of incident energy EE colliding with a target which is a 1D harmonic ``solid slab'' with NN atoms in its ground state; the Hilbert space of the target is restricted to the (N+1N+1) states with zero or one phonon present. For the case of a short range interaction, V(z)V(z), between the particle and the surface atom supporting a bound state, an explicit non-perturbative solution of the collision problem is presented. For finite and large NN, there is no true sticking but only so-called Feshbach resonances. A finite sticking coefficient \sls(E){\sl s}(E) is obtained by introducing a small phonon decay rate η\eta and letting NN\to\infty. Our main interest is in the behavior of \sls(E){\sl s}(E) as E0E\to 0. For a short range V(z)V(z), we find \sls(E)E1/2{\sl s}(E)\sim E^{1/2}, regardless of the strength of the particle-phonon coupling. However, if V(z)V(z) has a Coulomb z1z^{-1} tail, we find \sls(E)α{\sl s}(E)\to\alpha, where 0<α<10 < \alpha < 1. [A fully classical calculation gives \sls(E)1{\sl s}(E)\to 1 in both cases.] We conclude that the same threshold laws apply to 3D systems of neutral and charged particles respectively.

Keywords

Cite

@article{arxiv.cond-mat/9205004,
  title  = {Low Energy Behavior of Quantum Adsorption},
  author = {D. P. Clougherty and W. Kohn},
  journal= {arXiv preprint arXiv:cond-mat/9205004},
  year   = {2007}
}

Comments

11 pages + 1 figure (included)