Coherent Optical Spectroscopy of a Strongly Driven Quantum Dot

Xiaodong Xu, Bo Sun, P. R. Berman, D. G. Steel, Allan S. Bracker, D. Gammon, L. J. Sham

Science · 2007 · 362 citations · 25 references

Concepts

Abstract

Quantum dots are typically formed from large groupings of atoms and thus may be expected to have appreciable many-body behavior under intense optical excitation. Nonetheless, they are known to exhibit discrete energy levels due to quantum confinement effects. We show that, like single-atom or single-molecule two- and three-level quantum systems, single semiconductor quantum dots can also exhibit interference phenomena when driven simultaneously by two optical fields. Probe absorption spectra are obtained that exhibit Autler-Townes splitting when the optical fields drive coupled transitions and complex Mollow-related structure, including gain without population inversion, when they drive the same transition. Our results open the way for the demonstration of numerous quantum level-based applications, such as quantum dot lasers, optical modulators, and quantum logic devices.

References

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