Published February 2008 | Version v1
Journal article

Coherent manipulations of atoms using laser light

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Description

The internal structure of a particle - an atom or other quantum system in which the excitation energies are discrete - undergoes change when exposed to pulses of near-resonant laser light. This tutorial review presents basic concepts of quantum states, of laser radiation and of the Hilbert-space state vector that provides the theoretical portrait of probability amplitudes - the tools for quantifying quantum properties not only of individual atoms and molecules but also of artificial atoms and other quantum systems. It discusses the equations of motion that describe the laser-induced changes (coherent excitation), and gives examples of laser pulse effects, with particular emphasis on two-state and three-state adiabatic time evolution within the rotating-wave approximation. It provides pictorial descriptions of excitation based on the Bloch equations that allow visualization of two-state excitation as motion of a three-dimensional vector (the Bloch vector) (Authors)

Additional details

Publishing Information

Journal Title
Acta Physica Slovaca
Journal Volume
58
Journal Issue
3
Journal Page Range
p. 243-486
ISSN
0323-0465
CODEN
APSVCO

Optional Information

Notes
177 refs., 83 figs., 3 tabs.