English

Drastically enhanced high-order harmonic generation from endofullerenes

Atomic Physics 2019-12-25 v3

Abstract

Dynamically rich nature of the high-order harmonic generation process lends itself to a variety of ways to increase photon yield and extend the harmonic cut-off frequency. We show here that high-harmonic generation from an atom confined inside an attractive potential shell can show a dramatic increase in the photon yield in certain cases. We consider an endohedrally confined hydrogen atom inside a C60_{60} cage as an example, and consider three distinct physical situations in which the initial state is (1) entirely confined inside the C60_{60}, (2) partially outside, and (3) mainly localized on the cage wall. We demonstrate that when the atom-cage system starts in a state with a classical turning point outside the C60_{60} shell, the high-harmonic photon yield can be enhanced up to 4 orders of magnitude when compared with a free atom in the same initial state. We explain the underlying physical mechanisms in each case using fully three-dimensional quantum simulations. This gives a prime example of how directly coupling an atom to a nanostructure can alter strong field processes in atoms in interesting ways.

Keywords

Cite

@article{arxiv.1810.09035,
  title  = {Drastically enhanced high-order harmonic generation from endofullerenes},
  author = {T. Topcu and E. A. Bleda and Z. Altun},
  journal= {arXiv preprint arXiv:1810.09035},
  year   = {2019}
}

Comments

12 pages, 10 figures

R2 v1 2026-06-23T04:47:36.586Z