Nonlinear Response via Sublinear Optics
Abstract
Sublinear optical response, in which the emitted field scales as a fractional power of the driving field, lies beyond the conventional perturbative hierarchy of nonlinear optics. Here, we show that such a response can be engineered in a hydrogen atom using tracking control. Rather than prescribing the driving waveform, the field is determined self-consistently from the evolving quantum state to enforce a chosen relation between the optical response and the applied field. We demonstrate accurate tracking for multiple exponents and scaling strengths, establishing that a single atomic system can be driven to realize a family of distinct sublinear responses. The calculations are enabled by a compact wave-packet continuum discretization that treats bound and continuum states on equal footing and is applied here, to the best of our knowledge, for the first time to strong-field optics and quantum control. These results establish tracking control as a general route to engineering optical responses beyond conventional polynomial nonlinearities.
Cite
@article{arxiv.2607.19154,
title = {Nonlinear Response via Sublinear Optics},
author = {Mykhaylo Khoma and Valeriia Bilokon and Elvira Bilokon and Denys I. Bondar},
journal= {arXiv preprint arXiv:2607.19154},
year = {2026}
}
Comments
5 pages, 4 figures