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- From: Szeminárium koordinátor <szfi-seminar AT wigner.mta.hu>
- To: Szeminárium <seminar AT szfki.hu>
- Subject: [Fizinfo] [Seminar] WIGNER SZFI Seminar, 17 Oct - Matthias Droth
- Date: Thu, 12 Oct 2017 06:26:01 +0200 (CEST)
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WIGNER SZFI Seminar
Electron-electron attraction in graphene electromechanical systems
Matthias Droth
BME TTK, Fizika Tanszék (host: Asbóth János)
Tuesday, 17 October 2017 10:00, KFKI Campus, Bldg. 1, 2nd floor, Conference Room
Two electrons in a quantum dot repel each other: their interaction can be characterized by a positive interaction energy. From the theory of superconductivity, we also know that mechanical vibrations of the crystal lattice can make the electron-electron interaction attractive. Analogously, if a quantum dot interacts with a mechanical degree of freedom, the effective interaction energy can be negative; that is, the electron-electron interaction might be attractive. In this work, we propose and theoretically study an engineered electromechanical system that exhibits electron-electron attraction: a quantum dot suspended on a nonlinear mechanical resonator, tuned by a bottom and a top gate electrode. We focus on the example of a dot embedded in a suspended graphene ribbon, for which we identify conditions for electron-electron attraction. Our results suggest the possibility of electronic transport via tunneling of packets of multiple electrons in such devices, similar to that in superconducting nanostructures, but without the use of any superconducting elements.
Everyone is welcome to attend.
János Asbóth
szfi-seminar AT wigner.mta.hu
- [Fizinfo] [Seminar] WIGNER SZFI Seminar, 17 Oct - Matthias Droth, Szeminárium koordinátor, 10/12/2017
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