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Titlebook: Coherent Control in Atoms, Molecules, and Semiconductors; Walter Pötz,W. Andreas Schroeder Book 1999 Springer Science+Business Media Dordr

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https://doi.org/10.1007/978-3-211-72017-2e driving potential that spoil the symmetry of the system. It is shown that asymmetric barriers as well as non-uniform driving amplitudes are not detrimental to observing these states. On the other hand, an asymmetry in the band profile to the left and right of the barrier exceeding a few photon qua
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,Lebendigkeit für eine tragbare Realität,transitions between the localized states. The interference of action of two coherent sources leads to the polar asymmetry of transitions. The asymmetric part of the transition probability is obtained in the third order of electric field. It depends on the phase shift between two waves..The transitio
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https://doi.org/10.1007/978-3-211-72017-2 state results in the formation of exciton-polariton states. Coherent microcavity emission exhibits temporal oscillation due to the beating among exciton-polariton states. Our study indicates that a high-Q microcavity can strongly modify exciton’s spontaneous emission process, leading to coherent coupling between excitons and photons.
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Coherent Phase Control of Photoionization and Photodissociationcurring can be calculated by adding the probability amplitudes for each path and then squaring the sum. A well known example is the photoionization of an atom or a molecule. One route connecting the ground state . > with the continuum 39-1 > is direct ionization, with a probability amplitude that is proportional to 39-1
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How to Write Engineering Report,Coherent control of molecular processes provides a means of controlling the dynamics of molecules, and of molecular processes, via laser induced quantum interference. We briefly review this approach, with a focus on scenarios useful for controlled currents in semiconductors and on alternate new control scenarios.
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