Quantum probe and design for a chemical compass with magnetic nanostructures
Abstract
Magnetic fields as weak as Earth's may affect the outcome of certain photochemical reactions that go through a radical pair intermediate. When the reaction environment is anisotropic, this phenomenon can form the basis of a chemical compass and has been proposed as a mechanism for animal magnetoreception. Here, we demonstrate how to optimize the design of a chemical compass with a much better directional sensitivity simply by a gradient field, e.g. from a magnetic nanostructure. We propose an experimental test of these predictions, and suggest design principles for a hybrid metallic-organic chemical compass. In addition to the practical interest in designing a biomimetic weak magnetic field sensor, our result shows that gradient fields can server as powerful tools to probe spin correlations in radical pair reactions.
Keywords
Cite
@article{arxiv.1011.5495,
title = {Quantum probe and design for a chemical compass with magnetic nanostructures},
author = {Jianming Cai},
journal= {arXiv preprint arXiv:1011.5495},
year = {2015}
}
Comments
8 pages, 6 figures, comments are welcome