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The photocurrent generated by photon replica states of an off-resonantly coupled dot-cavity system
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Transport properties of a quantum dot coupled to a photon cavity are investigated using a quantum master equation in the steady-state regime. In the off-resonance regime, when the photon energy is smaller than the energy spacing between the lowest electron states of the quantum dot, we calculate the current that is generated by photon replica states as the electronic system is pumped with photons.Tuning the electron-photon coupling strength, the photocurrent can be enhanced by the influences of the photon polarization, and the cavity-photon coupling strength of the environment. We show that the current generated through the photon replicas is very sensitive on the photon polarization, but it is not strongly dependent on the average number of photons in the environment.
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The interplay of electron-photon and cavity-environment coupling on the electron transport through a quantum dot system
In a quantum dot coupled to a photon cavity, the electric current increases with cavity-environment coupling in both weak and strong coupling regimes, but strong x-polarized electron-photon coupling suppresses the current.
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