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arxiv: 1008.1893 · v2 · pith:WGDB23TSnew · submitted 2010-08-11 · ❄️ cond-mat.other · physics.optics

Electric field-induced quantum interference control in a semiconductor: A new manifestation of the Franz-Keldysh effect

classification ❄️ cond-mat.other physics.optics
keywords injectioncarriercontroleffectelectricfranz-keldyshinterferencerate
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In (100)-oriented GaAs illuminated at normal incidence by a laser and its second harmonic, interference between one- and two-photon absorption results in ballistic current injection, but not modulation of the overall carrier injection rate. Results from a pump-probe experiment on a transversely biased sample show that a constant electric field enables coherent control of the carrier injection rate. We ascribe this to the nonlinear optical Franz-Keldysh effect and calculate it for a two-band parabolic model. The mechanism is relevant to centrosymmetric semiconductors as well.

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