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- W2092654078 abstract "The $N$-photon absorption coefficient of a direct gap semiconductor under the influence of a uniform electric field perpendicular to the layer and neglecting excitonic effects is calculated. For $N=2$ we recover the familiar results for the low-field regime. The system also shows the same universal behavior as for the $N=1$ case. Below the ${E}_{g}∕2$ edge the absorption coefficient develops the exponential tail characteristic of $N=1$, but with a different photon energy and electric field dependency while above the ${E}_{g}∕2$ edge Franz-Keldysh oscillations with strong damping features are present. An analytical expression for the tunneling assisted two-photon absorption coefficient is given. Our discussion gives suggestions for the use of the effect in the nonlinear regime to characterize the critical point of otherwise forbidden transitions in semiconductors." @default.
- W2092654078 created "2016-06-24" @default.
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- W2092654078 date "2006-07-31" @default.
- W2092654078 modified "2023-09-26" @default.
- W2092654078 title "Tunneling assisted two-photon absorption: The nonlinear Franz-Keldysh effect" @default.
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- W2092654078 doi "https://doi.org/10.1103/physrevb.74.035212" @default.
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