English

Saturation of Two Level Systems and Charge Noise in Josephson Junction Qubits

Superconductivity 2009-11-13 v2

Abstract

We study the charge noise SQS_Q in Josephson qubits produced by fluctuating two level systems (TLS) with electric dipole moments in the substrate. The TLS are driven by an alternating electric field of angular frequency Ω\Omega and electric field intensity II. It is not widely appreciated that TLS in small qubits can easily be strongly saturated if IIcI\gg I_c, where IcI_c is the critical electric field intensity. To investigate the effect of saturation on the charge noise, we express the noise spectral density in terms of density matrix elements. To determine the dependence of the density matrix elements on the ratio I/IcI/I_c, we find the steady state solution for the density matrix using the Bloch-Redfield differential equations. We then obtain an expression for the spectral density of charge fluctuations as a function of frequency ff and the ratio I/IcI/I_c. We find 1/f1/f charge noise at low frequencies, and that the charge noise is white (constant) at high frequencies. Using a flat density of states, we find that TLS saturation has no effect on the charge noise at either high or low frequencies.

Keywords

Cite

@article{arxiv.0810.1334,
  title  = {Saturation of Two Level Systems and Charge Noise in Josephson Junction Qubits},
  author = {Magdalena Constantin and Clare C. Yu and John M. Martinis},
  journal= {arXiv preprint arXiv:0810.1334},
  year   = {2009}
}

Comments

13 pages, 9 figures, accepted for publication in Phys. Rev. B