University of Wollongong
Browse

Resonant electronic transport through a triple quantum-dot with K-type level structure under dual radiation fields

Download (5.42 MB)
journal contribution
posted on 2024-11-15, 13:31 authored by Chun Guan, Yunhui Xing, Chao ZhangChao Zhang, Zhongshui Ma
Due to quantum interference, light can transmit through dense atomic media, a phenomenon known as electromagnetically induced transparency (EIT). We propose that EIT is not limited to light transmission and there is an electronic analog where resonant transparency in charge transport in an opaque structure can be induced by electromagnetic radiation. A triple-quantum-dots system with K-type level structure is generally opaque due to the level in the center dot being significantly higher and therefore hopping from the left dot to the center dot is almost forbidden. We demonstrate that an electromagnetically induced electron transparency (EIET) in charge of transport can indeed occur in the K-type system. The direct evidence of EIET is that an electron can travel from the left dot to the right dot, while the center dot apparently becomes invisible. We analyze EIET and the related shot noise in both the zero and strong Coulomb blockade regimes. It is found that the EIET (position, height, and symmetry) can be tuned by several controllable parameters of the radiation fields, such as the Rabi frequencies and detuning frequencies. The result offers a transparency/ opaque tuning technique in charge transport using interfering radiation fields.

History

Citation

Guan, C., Xing, Y., Zhang, C. & Ma, Z. (2014). Resonant electronic transport through a triple quantum-dot with K-type level structure under dual radiation fields. Journal of Applied Physics, 116 (6), 063702-1-063702-10.

Journal title

Journal of Applied Physics

Volume

116

Issue

6

Language

English

RIS ID

92499

Usage metrics

    Categories

    Exports

    RefWorks
    BibTeX
    Ref. manager
    Endnote
    DataCite
    NLM
    DC