Abstract
We analyze long-range transport through an ac driven triple quantum dot with a single electron. Resonant transitions between separated and detuned dots are mediated by the exchange of n photons with the time-dependent field. An effective model is proposed in terms of second order (cotunneling) processes which dominate the long-range transport between the edge quantum dots. The ac field renormalizes the inter dot hopping, modifying the level hybridization. It results in a non-trivial behavior of the current with the frequency and amplitude of the external ac field.
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CITATION STYLE
Gallego-Marcos, F., Sánchez, R., & Platero, G. (2015). Photon assisted long-range tunneling. Journal of Applied Physics, 117(11). https://doi.org/10.1063/1.4913834
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