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Engineering and Manipulating Exciton Wave Packets

Authors :
Zang, Xiaoning
Montangero, Simone
Carr, Lincoln D.
Lusk, Mark T.
Source :
Phys. Rev. B 95, 195423 (2017)
Publication Year :
2016

Abstract

When a semiconductor absorbs light, the resulting electron-hole superposition amounts to a uncontrolled quantum ripple that eventually degenerates into diffusion. If the conformation of these excitonic superpositions could be engineered, though, they would constitute a new means of transporting information and energy. We show that properly designed laser pulses can be used to create such excitonic wave packets. They can be formed with a prescribed speed, direction and spectral make-up that allows them to be selectively passed, rejected or even dissociated using superlattices. Their coherence also provides a handle for manipulation using active, external controls. Energy and information can be conveniently processed and subsequently removed at a distant site by reversing the original procedure to produce a stimulated emission. The ability to create, manage and remove structured excitons comprises the foundation for opto-excitonic circuits with application to a wide range of quantum information, energy and light-flow technologies. The paradigm is demonstrated using both Tight-Binding and Time-Domain Density Functional Theory simulations.<br />Comment: 16 figures

Details

Database :
arXiv
Journal :
Phys. Rev. B 95, 195423 (2017)
Publication Type :
Report
Accession number :
edsarx.1605.04255
Document Type :
Working Paper
Full Text :
https://doi.org/10.1103/PhysRevB.95.195423