English

Microwave-induced pi-junction transition in a superconductor / quantum-dot / superconductor structure

Mesoscale and Nanoscale Physics 2010-08-03 v1

Abstract

Using the nonequilibrium Green function, we show that microwave irradiation can reverse the supercurrent flowing through a superconductor / quantum-dot / superconductor structure. In contrast with the conventional sideband effect in normal-metal / quantum-dot / normal-metal junctions, the photon-assisted structures appear near E0=n2ω(n=±1,±2...)E_{0}=\frac{n}{2}\hbar \omega (n=\pm 1,\pm 2...), where E0E_{0} is the resonant energy level of the quantum dot and ω\omega is the frequency of microwave field. Each photon-assisted structure is composed of a negative and a positive peak, with an abrupt jump from the negative peak to the positive peak around E0=n2ωE_{0}=\frac{n}{2}\hbar \omega . The microwave-induced π\pi -junction transition is interpreted in the picture of photon-assisted Andreev bound states, which are formed due to multiple photon-assisted Andreev reflection between the two superconductors. Moreover, the main resonance located at E0=0E_{0}=0 can also be reversed with proper microwave strength and frequency.

Keywords

Cite

@article{arxiv.cond-mat/0204019,
  title  = {Microwave-induced pi-junction transition in a superconductor / quantum-dot / superconductor structure},
  author = {Yu Zhu and Wei Li and Tsung-han Lin and Qing-feng Sun},
  journal= {arXiv preprint arXiv:cond-mat/0204019},
  year   = {2010}
}

Comments

10 pagres, 3 figures

R2 v1 2026-07-22T10:35:36.024Z